Thursday, May 31, 2012

Breast Cancer Symposium A Great Success ? Health ? Bangor ...

UBS Financial Services partnered with the Maine Affiliate of Susan G. Komen for the Cure and American Cancer Society to offer a Breast Cancer Symposium at USM in Portland on May 24th. With nearly 200 attendees and 18 exhibitors, the event was informative for breast cancer survivors and the general public alike.

The Maine Affiliate of Susan G. Komen was established in 1997 and serves the entire state. Through events like the Race for the Cure, which are held in both Portland and Bangor in September, Komen raises funds to help underserved populations. 75% of net funds raised are invested in education, screening and treatment programs in Maine, while the remaining 25% funds innovative breast cancer research to find the cures. To date, Komen Maine has invested nearly $2.6 million in our local communities.

Any business, club or other organization interested in hosting a breast cancer educational event may contact the Komen Maine Affiliate at 207-262-7117 or info@komenmaine.org.

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Google Voice brings greater control over anonymous and unknown callers

Google Voice brings greater control over anonymous and unknown callersThink about it for a moment: do you recall a single instance when you were actually glad that you answered a telephone call from a blocked number? Unless that bill collector turned out to be your future spouse, the answer is likely no. Now, Google Voice users will find an extra perk in the online settings that should take the edge off of receiving calls from unknown sources. You'll now find the ability to screen anonymous callers, whereby the system will prompt the individual to state their name, and only then will your phone ring. From there, you'll have the option of answering the call, sending it to voicemail, or even listening in as the caller leaves a voice message -- kinda like back in the days of answering machines. Similarly, you'll also find the ability to apply this same screening process to callers who aren't in your address book. As proof that Google isn't a total grouch, it's also thrown in a new option that allows you to customize a warm greeting for those contacts who are, in fact, in your address book. After all, it never hurts to show some love.

Google Voice brings greater control over anonymous and unknown callers originally appeared on Engadget on Thu, 31 May 2012 03:13:00 EDT. Please see our terms for use of feeds.

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Dyson's Design Chief: Green Comes Naturally From Great - tighz

Green. It?s a catchall phrase that?s used and abused, making it nearly impossible for people to distinguish the inventive from the tokenistic. Because most people agree it?s a good thing, it?s molded to fit agendas and sell products. The fact is, it?s easier for companies to talk green than to innovate.

Now I?m not an environmentalist. But I am an engineer and know a little about designing machines. Engineers are very singular. They don?t necessarily start out to make something ?green? but rather to create something that works better. Often, to achieve that goal, they have to do more with less. Rather than green engineering, it?s about efficient engineering.

I am not an environmentalist. But I am an engineer.

It?s not a new concept. Engineering has always been about efficiency. Take a hero of mine: Isambard Kingdom Brunel. Brunel built 25 railway lines, over a hundred bridges, including five suspension bridges, eight pier and dock systems, three ships, and a prefabricated army field hospital. He was a genius and just 53 when he died. On one of his ships, the SS Great Britain, he perfected the screw propeller, making the ship faster than its paddled predecessor and the first iron-hulled vessel (and the largest) to cross the Atlantic. All this was engineered on paper. Even with all of our computer programs and modeling software, today?s propellers are only 5% more efficient.

Then there?s the original Mini. Launched in 1959 during the Suez oil crisis, it was an alternative to gas guzzlers. The designer Alec Issigonis rotated the engine, making the car smaller, lighter, and more economical. It was green before green existed. The United States felt a similar squeeze in 2008?and saw a very quick shift to more fuel-efficient cars. And as gasoline prices rise, it?s likely that electric-, hybrid-, or fuel-cell powered cars will become necessity rather than novelty. But getting the technology right won?t be easy. When it comes to engineering better, longer-lasting products, patience can be in short supply.

It took Boeing over eight years to bring its 787 Dreamliner to market. For the fuselage and wings, its engineers used advanced composite technologies, rather than the standard aluminum. Such materials had never been applied at this scale. The result was fewer parts and a lighter body, allowing the plane to fly farther, burning 20% less fuel?more with less. Yet, rather than being applauded for its engineering excellence, Boeing was chastised for delays resulting from a lengthy research-and-development process?the scapegoat for being first out of the gate.

There are often delays to great engineering projects. That?s because it?s hard to invent something that?s all-round better. And energy efficiency is the hardest nut to crack. It?s fraught with political debate and uncertainty, both environmental and economical. Efficiency?whether that?s material efficiency, energy efficiency, or performance efficiency?is essential to good engineering and genuine advances in sustainable design. You can?t sacrifice one for another. Energy efficiency must be balanced with performance; no one will buy an appliance that does half a job.

For example, to comply with demanding new American efficiency standards, some washing machine manufacturers reduced the quantity of hot water used per wash. In principle, it made perfect sense: less hot water means less energy used. The trouble was that it came at the expense of clean clothes.

If ?green? is what we want, legislation may be part of it. But it?s a doubled-edge sword.

So is it even possible to create big performance from a small input? We think so. But it?s not easy. Our engineers and scientists have spent 15 years developing our digital motor technology. It uses electronic pulses to drive the motor, rather than conventional carbon brushes, and spins incredibly fast?more than 80,000 times a minute, or four times faster than a racecar engine. This motor helps reduce energy use in our Airblade hand dryer, allowing the machine to create 70% less carbon emissions than paper towels and hot- air hand dryers. Less energy means less cost. But it has to work better and faster, too.

That?s where the difficulty comes in. This kind of investment is risky and takes time. We do it to make a better machine, something that works properly?no more wiping your damp hands on your trousers?and because we think it?s a manufacturer?s responsibility to engineer efficiently. The trouble is that it?s easy to sell something based on bigness: big-box stores, supersize drinks, and vast televisions. So that?s what a lot of manufacturers do. It?s harder to get the message across that how something really performs is what counts. It?s easier to say a car has a three-liter engine than it is to say a car has a one-liter engine with three-liter performance.

If ?green? is what we want, legislation may be part of it. But it?s a doubled-edge sword. It should encourage genuine advances in invention?machines that cut energy use without sacrificing performance. But this is not always the case. In the European Union, for example, legislation determined that new cars should use a higher proportion of recycled steel. A noble aim but the result was heavier cars that actually consumed more fuel driving up the carbon footprint.

While green-washing is nothing new, the scale is. As more companies wield green paintbrushes, it?s less likely a coat of paint will woo a potential customer. Instead, companies that lead the charge in creating better technologies, efficient motors, battery and capacitor technology, and more will have a competitive advantage. When it comes to green, people want to make the right choice, but amid a barrage of claims, causes, and issues, it?s almost impossible to distinguish the well meaning from the meaningless. Good marketing means that green can mean anything. But good engineering means efficient engineering. It?s not quick or easy, but it is the right thing to do, and it doesn?t just make sense in terms of sustainability but as a business strategy, too.

via http://www.fastcodesign.com/1669848/dysons-design-chief-green-comes-naturally-from-great-engineering

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Wednesday, May 30, 2012

Women in Wine - The London Pub

Recently I decided to conquer a great fear in my very storied and bizarre life ? the dreaded Wine List. As a fashion designer, writer, and man about town I?m very fortunate to be invited to fancy and swanky restaurants, soirees and events. Therefore to put it plainly, I spend a fair amount of time inhaling great food and swigging fine wine. I know ? don?t cry for me Argentina. However, not until recently did I truly realize I wasn?t fully appreciating the art, process and tradition of fine dining and particularly, the crafstmanship of great wine. But all of this about to change ? and when Mister GoLightly decides to make a change, he brings everyone along for the ride.
The first thing I knew I would need to begin my transformation from vino novice to wine connoisseur was a team of experts. Yes experts, as I plan on taking my wine consumption very seriously from this point forward. Therefore I will require a trio of professionals to guide me in the right direction. So I decided to seek assistance from the people closest to me. I telephoned, emailed, and met with almost every person I knew that had anything to do with the wine business. However, what I found a little strange was that most of the people I knew in the wine biz were all men. While most of the men I spoke with were all very passionate and educated about wine, there was just something about their approach that didn?t quite fit with what I was trying to get at in my quest. I really wanted to know more about the sense of reverence that seems to surround the art of wine tasting and making. In essence, I really wanted to be educated on the beauty, charm and creativity of fine wine. Somehow, this got me to wondering, ?Are there many women in the wine business?? I didn?t have very long to ponder the question as it was magically answered one fateful afternoon while having lunch at the Four Seasons in New York City. I started yammering on and on about my need to connect to people in the wine business when a dear friend said to me, ?You should meet one of the owner?s daughter, Keiko. She knows all about wine.?
BEAUTY: The strikingly gorgeous and modelesque Keiko Niccolini was born into the charmed world of restaurants and fine dining ? the venerable Four Seasons Restaurant to be exact. Legend has it that Keiko could filet a Dover sole and saber a bottle of champagne before she could ride a bike. As a young girl she could be found on any given day running through the hallowed halls of the family business. However, as an adult she now travels the world in search of new dishes and wines to bring to the tables of the Four Season as well as her wine consulting firm AMEDEO. Keiko as you can imagine, was destined for a life in food and wine.
And now, Keiko Niccolini has agreed to be my guru, my personal guide as I embark on a mysterious journey into and beyond Wine Tasting 101.
Under Ms. Niccolini?s tutelage and through the course of our adventures, I am hoping to come out on the other end a lot more knowledgeable and a little less afraid of sampling and experiencing new wines and spirits. It is also my desire to finally retire my catch phrase when it comes to choosing or drinking wine, ?It doesn?t matter what I drink ? I only drink to get drunk.? Which is only partly true. Who cares if every time I repeat it Keiko reacts as if someone has taken their well manicured fingernails and scratched them down a freshly wiped chalkboard. Well I care ? and hopefully somewhere along the way, this juvenile retort will be retired and replaced with language that describes delicious wine with the respect and grace it rightfully deserves.
Needless to say, Keiko and I have become fast friends. Recently after attending a not-so-fabulous and actually quite boring soiree, she thought that it would be the perfect time for a surprise crash course in wine tasting ? total emergence in wine culture. So she decided to introduce me to a real-life Master Sommelier, Ms. Laura Maniec.
CHARM: Laura Maniec is a Native New Yorker and the charismatic owner of Corkbuzz Wine Studio. During the course of our evening I learned that Laura actually discovered her true enthusiasm for wine through an 18-week sommelier certification class at Windows of the World. It was through this experience that she was inspired, motivated and excited to pursue a career in wine.
A girl after my own heart, just as Laura was legally able to drink she became a sommelier at Blue Fin in New York City. Progressing quickly, she was made a partner as well as wine and spirits director for the entire B.R. Guest Restaurant Group of 20 restaurants across the country. At only 25 years old, she was managing the wine list as well as educating the entire front-of-house team on wine.
It turns out the charming and personable Ms. Maniec earned her Master Sommelier designation in 2009 and is currently the youngest in the world. Not to mention she is one of only 18 women to have achieved this highest accreditation given to wine professionals. And on this night she too agreed to join the team and proceeded to give me a VIP guided tour through their intense and intimidating wine list. But for the first time in being presented a normally daunting wine list, I wasn?t afraid. I was almost downright giddy. What did I have to fear? I was now armed with not only a wine guru but also a master sommelier. Take that 33- or 72-page wine list! Okay, in all honesty, I may be exaggerating the personal attention given just to me by our master sommelier. You see Laura seems to possess the uncanny ability to give everyone that enters the doors of CorkBuzz the same level of attention and graciousness ? an ability rarely found in New York City eateries these days.
To attempt description of the champagnes, reds, whites and ros?s that danced and dazzled in my mouth on this evening would do CorkBuzz and Ms. Maniec a grave injustice. I don?t possess the eloquence to characterize the pas de deux that took place between the exquisite wine list and the culinary masterpieces prepared by their Executive Chef, Hayan Yi. I don?t dare attempt to formulate adequate prose to depict the near religious experience that visitors share in this tastefully decorated restaurant and wine bar. To try and fail would be borderline blasphemy. However after almost closing down the joint accompanied by a magnificent high that had no resemblance at all to being drunk, I felt as if I had to rush home and immediately repent, ?Our Mother, Full of Grace??
Which brings me to the most recent introduction to form my dream team, my trilogy, my Three Graces?
For several weeks during our tastings and outings, Keiko kept saying to me, ?You have to meet my mentor in all things wine. You will love her.? I will admit, in my experience whenever someone says to me ?You will love him or her,? this has rarely ever been the case. But this was coming from my guru ? my liege, and she hadn?t steered me wrong thus far. So off I went the other afternoon, in the pouring New York City rain, to The Modern restaurant located at the Museum of Modern Art to meet Ms. Joy Sterling.
CREATIVITY: The inventive and visionary Joy Sterling represents the second generation of wine making at Iron Horse Vineyards. She is the CEO of the winery and the author of four books on the art of wine. Although she was born in America, Joy grew up in Paris, attended a French school, and speaks fluent French. Living in Europe and traveling extensively, Ms. Sterling received an extraordinary education in the appreciation of food and wine as well as a love of quality wherever it is found in the world.
Joy returned to the United States to attend Yale University where she studied history and economics. After her studies she went into journalism, first for United Press International, followed by local television, and ultimately, network TV news. At the age of 29, Joy was Deputy Bureau Chief for ABC Network News in Los Angeles. She was given numerous special assignments including coverage of the first Space Shuttle landings in California, coordinating producer for several Presidential trips, and the high point of her career, Assignment Editor for ABC?s 1984 Olympic coverage.
In 1985, Joy left ABC?s hierarchy to join her family?s business. Thus, a new sort of woman was recruited into California?s wine industry. Significantly, she made news headlines for the winery with her first achievement at Iron Horse. In November, 1985, the White House selected Iron Horse Sparkling Wine for the President?s toast to peace at the first summit meeting with Mikhail Gorbachev in Geneva.
Joy quietly took up the reins at Iron Horse at the start of 2006, having spent 20 years traveling on behalf of the winery, personally introducing the wines to an impressive list of customers from Spago in Beverly Hills to the Four Seasons in New York.
She is an adventurer, having climbed Kilimanjaro, run white water rapids on the Bio-Bio River in Chile and the upper reaches of the Yank Sing River in China, trekked in Tibet and Bhutan, and completed a road trip to Timbuktu.
Joy joined the prestigious Board of Trustees of The Leakey Foundation in 2007. One of her major initiatives is hosting an annual fundraising and awareness raising event in partnership with National Geographic celebrating Earth Day held at Iron Horse.
Now I ask you ? What is there not to love about Joy a.k.a. @JoyBubbles? From the moment we made eye contact as I shuffled in from the pouring rain, looking more disheveled like Ms. GoLightly?s wet cat than the intended flawlessness of Holly off to visit Sally Tomato at Sing-Sing, I innately knew that I would be captivated and bewitched by the accomplished Joy Sterling.
Joy is earth-mother, rainmaker and wine whisperer wrapped into one stylish, hot-mama of a package. Did I mention she was also wearing a navy vintage Dior dress? I almost died and went to heaven at the sight of this magnificent being. The one thing you quickly learn about Joy within five minutes of being in her presence is that she is filled with love, life and passion. As we shared a bottle of her world famous Iron Horse Wedding Cuvee I found out that she is also a hugger, a great thinker, a visionary, a powerhouse, and just an awesome down-to-earth gal.
During the entire afternoon my eyes kept darting from Keiko to Joy, my mind was racing, but my mouth couldn?t keep up with all the thoughts bursting through my brain. I must have come across as a complete crazy person but what I couldn?t explain to either of these incredible women was how I was finally beginning to understand it all. How I understood there was more than just wine they had in common. How I could see the ancestral sisterhood, the kinship, an indigo hued spiritual camaraderie void of competition or pettiness. But mostly, I was in complete and utter awe. I found myself in an absolute state of humbled gratitude. Grateful that I had been allowed to bare witness to their sublime and noble grace.
As I finally sat down to write this piece, I couldn?t believe that in only a few short weeks I had already begun to develop a true appreciation for wines produced in Napa Valley as well as grapes grown in the Vittoria region of Sicily. I discovered that my preference for all things ?pink and bubbly? had very little to do with my flamboyance and sexual orientation and much more to do with the various techniques and processes utilized to achieve just the right shade, smell and taste of Ros?. And while I am still at the very beginning stages of my wine adventures, I doubt very seriously if I will be drinking with the goal of getting drunk in mind (wink-wink). Instead, I envision buckling up and bracing myself for the long and meandering roads of wine country under the watchful gaze, generosity and guidance of my divine Three Graces.

http://www.huffingtonpost.com/malcolm-harris/women-in-wine-the-three-g_b_1537812.html

Splendid bar in Clark Philippines, this London Pub is hidden in Mimosa Leisure Estate of Clark Freeport. This is probably the best bar in Angeles City Clark Philippines. Many think there should be a few more of this kind of family restaurants and bars in Clark Pampanga which is a mere 70 minutes from Manila.

Something about this bar in Clark Philippines that makes people want to come back over and over again. Those two dine out a lot in Angeles City find the food and service of bars around Angeles City Clark Pampanga not up to standard. Clark Freeport is nice to have such a good bar that serves excellent food.

The veranda of this bar in Clark Pampanga is absolutely charming. Sitting on the porch at 9pm with a nice glass of wine watching the people walking by in Mimosa, golfers finishing up their day and getting ready to return home to Angeles City or Manila, really makes for a perfect ending to a day in Clark Freeport Philippines.

This famous bar in Clark Pampanga also offers nice venues for private and semi-private parties, company events and social functions. The garden area of this pub provides for excellent venue for parties and celebrations for up to 150 people.

Getting to this family restaurant, bar and pub of Angeles City Clark Freeport Zone Pampanga Philippines
How to get to this resto bar in Clark Pampanga? Upon reaching Pampanga Clark Freeport, go straight until hitting Mimosa Leisure Estate. Enter Mimosa and stay on the left on Mimosa Drive, going past the Holiday Inn and Yats Restaurant (green top, independent 1-storey structure). Just past the fine dining Yats Restaurant and Wine bar is the London Pub which is also to the left. The London Pub is open seven days a week and happy hours is 4 to 7pm.

The London Pub
(045) 499-1177 09175240999 (632) 637-5019 ask for Glenda or Janet
Mimosa Drive past Yats Restaurant, Mimosa Leisure Estate,
Angeles City Clark Freeport Zone, Pampanga, Philippines 2023

Clark Philippines Nightlife, famous Bar, best pubs and cozy family restaurant

http://www.LondonPubClark.com

For more information about this bar in Angeles Philippines or any other matters to do with nightlife, entertainment, wine and dine, restaurant and wine in Clark Pampanga, just email us at LondonPub@Yats-International.com.

YATS Leisure Philippines is a developer and operator of clubs, resorts and high-class restaurants and wine shops in Clark Angeles Philippines http://www.YatsLeisure.com

Looking for famous tourists spots, places to visit and see, relax and unwind in Clark, Pampanga, Philippines? You may want to check out these sites also:

Best place to buy wine in Clark Pampanga outside Manila near Subic and Angeles City Philippines is Clark Wine Center. http://www.ClarkWineCenter.com

Wedding couples looking for wedding reception venues and beach wedding venues can log on to this Philippines Wedding Venue web site for free information and assistance:

http://www.PhilippinesWeddingVenue.com

While in Clark, it might be a good idea to enjoy an evening of wine-and-dine in the fine dining Yats Restaurant and Wine Bar that features an award winning 2700-line wine list. It is located in Mimosa Leisure Estate of Clark Freeport Zone. For more information, visit http://www.YatsRestaurant.com

http://www.HotelClarkPhilippines.com

http://www.ClarkPhilippines.com

http://www.YatsWineCellars.com

Yats Restaurant is the best restaurant for special dinner, best restaurant for dinner with friends near Manila, also the best place to celebrate special events.

Famous Restaurant in Pampanga, a place to dine with friends in Clark, cozy restaurant with a nice ambience, a nice function place for special occasions. Looking for a restaurant in Clark for a Business meeting? Or a place to eat with friends? Yats Restaurant offers exclusive dinner venue for groups, a good place to celebrate special occasions, it can be a party venue in town. Yats Restaurant is a recommended restaurant for private dinner in Philippines, a well-recognized restaurant that serves good food and good wines for dinner.
www.YatsRestaurant.com
Where to go in Clark? Hotel Clark Philippines is a De Luxe Hotel in Clark and Subic, a risk free place to stay, cozy and nice ambience, a nice function place for special occasion. It is one of North Luzon Philippines? top hotels that is trouble free, risk free, and a nice place to have rest in Subic. A well-recognized and interesting hotel.

www.HotelClarkPhilippines.com

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Battered BlackBerry maker weighs options

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Best jailbreak apps for iPhone

Just jailbreak iOS 5.1.1 on your iPhone and iPad and looking for the very best apps, tweaks, and other enhancements to try out? With jailbreak comes Cydia, the jailbreak app store, and an amazing amount of software simply unavailable inside Apple's App Store. But which ones are the best? Which are the top jailbreak apps you simply have to try out right now? Below you'll find iMore's favorite productivity enhancements, Notification Center enhancements, Messaging enhancements, customization and theme engines, and a lot of extras.


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Tuesday, May 29, 2012

Israel rejects appeal to free Fatah MP

NABLUS (Ma'an) -- Israel's high court on Sunday rejected an appeal to end the administrative detention of Palestinian MP Hussam Khader, his lawyer said.

Khader has been detained without charge or trial since June 2011. He was due to be released on June 1 but an Israeli military commander extended his detention by six months.

Jawad Boulos of the Palestinian prisoners society told Ma'an that Israel's high court decided not to overturn the decision to extend the Fatah lawmaker's detention, but said Khader's administrative detention would not be extended any further.

Boulos said Israeli authorities had promised before not to extend Khader's detention.

He added that by refusing to release Khader, Israel was reneging on the deal it struck with prisoners on May 15 to end a mass hunger strike.

Under the deal, Israel committed not to renew the administrative detention of all 322 Palestinians held without charge if there was no new information that required their imprisonment.

Under Israel's administrative detention policy, prisoners can be held without formal charges for renewable periods of six months. Defendants and their lawyers are not given access to the evidence used to imprison them.

Prisoners rights group Addameer said after the hunger strike deal it is "concerned that these provisions of the agreement will not explicitly solve Israel?s lenient and problematic application of administrative detention, which as it stands is in stark violation of international law."

Some 27 Palestinian MPs are held in Israeli jails, including 24 held without charge or trial.

Khader has been arrested repeatedly by Israel, Boulos said. He has been detained by Israeli forces on 26 occasions and spent nine years in Israeli prisons, the lawyer said.

Chairman of the parliamentary committee for the defense of refugees, Khader is a known champion of reconciliation with Hamas.

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Powerful "Flame" cyber weapon found in Middle East

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Monday, May 28, 2012

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Job Fair- June 1st at Consumer Credit Counseling Service (financial ...

Do you like to educate and assist others in need? Are you compassionate, energetic and a team player? If so, Consumer Credit Counseling Service of San Francisco may be the place for you. We are seeking individuals with a strong desire to help others and exceptional customer service and people skills to join our team.

We are hosting a job fair on:

Friday, June 1st
9:00 a.m. to 1:00 p.m.
Location: 595 Market Street, 9th Floor, San Francisco, CA 94105

We are recruiting for the following open positions:

Mandarin, Cantonese, or Spanish Speaking Credit and Housing Education Counselors
Housing Support Representatives
BALANCE Intake & Assessment Counselors
BALANCE Administrative Assistant
Web Specialist

Go to https://www.cccssf.org/careers.html or https://www.balancepro.net/careers.html to find out more about these positions.

Day of Job Fair:

Please bring a copy of our resume to the job fair. When you arrive, please check in with the front desk in the lobby. At the elevator bank, enter 9 into the keypad by the elevators. The electronic panel will direct you to the elevator to use. When you get to the 9th floor, we will have a greeter direct you where to go.

About Us:

Consumer Credit Counseling Service of San Francisco and its affiliate programs, BALANCE and the Housing Education Program, are committed to helping individuals and families nationwide overcome their financial challenges and meet their goals. Through local and national education and counseling programs we provide help and hope to families over whelmed by debt, facing foreclosure, struggling to master their money, caught in a cycle of over-priced fringe financial services, or trying to purchase their first home.

  • Compensation: Varies by position; 100% employer paid benefits
  • This is at a non-profit organization.
  • Principals only. Recruiters, please don't contact this job poster.
  • Please, no phone calls about this job!
  • Please do not contact job poster about other services, products or commercial interests.

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Sunday, May 27, 2012

MOTIVATION - Send In the Marines To Motivate Your Troops

As a former Captain in charge of boot camp for the U.S. Marines Corps, Carlos Kremer earned the nickname "The Master Motivator" for his uncanny ability to get inside the human mind, and completely rewire the thinking process. His years of experience as a boot camp instructor give him a distinct edge over other speakers. It's not an act. He's the real deal. He was born to motivate. Transforming himself into the "Super Sarge," he now brings that same sense of discipline to your business. Don't worry, folks - it's painless! He adds a touch of humor that helps his mental medicine go down. As a stand-up comic, he knows how to work the crowd. As a professional business counselor, he gets results. YOU BRING THE TROOPS, HE BRINGS THE THUNDER Always in character, always in uniform, the Super Sarge is both entertaining and motivational. Your team will laugh, as he turns them into an elite working unit: - For your sales team - he offers a high-octane, super-charged pep rally. - For factory workers - he slows it down to focus on fundamentals, safety and attitudes that may hinder their productivity. - For your office staff and customer service - he instills the same sense of teamwork he taught his recruits in the Marine Corps. GATHERING VITAL INTEL Before he marches in front of your troops, the Super Sarge does his research. He learns about your company, your goals and the projects you want to fix - he then develops his program to meet your needs. (See the praises from Duff & Phelps in the testimonial section.) A MEMORABLE EXPERIENCE WITH A REAL DRILL SARGE Contact the Super Sarge today, and let him show you why his special brand of discipline is your best choice for motivating your troops, improving their attitudes, and exceeding all your performance expectations. PS: As an added bonus, the Super Sarge encourages meeting planners to select a few employees (upper management gets the most chuckles) to perform humorous drills in front of the others ? to leave everyone with a memorable experience.

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London's Best Vegetarian Restaurants | Londonist

Mildred's restaurant. From Londonist Flickr Pool

London offers some of the best vegetarian food available. The capital?s veggie restaurants and caf?s?vary from offering light bites and food on the go to fine dining. They take their influences from the UK, the Mediterranean and of course South India amongst many other cuisines.

Many vegetarian places are hugely popular with veggies and non-veggies alike. As we draw to the end of national Vegetarian Week, we choose our own favourite restaurants.

Please leave your comments and let us know your favourites and we?ll add them as we go along.

Mildred?s
Mildred?s is one of the busiest and most popular vegetarian restaurants in London. Offering a diverse range of fresh and exiting food from Sri-Lankan to Mediterranean dishes and veggie burgers, it has become one of the most vibrant eateries in Soho, if not London.

Starters come in at around ?6 with mains costing between ?7 and ?11. For the quality of food, this is incredible value. Mildred?s don?t take table bookings, so you have to turn up on spec. This can mean a bit of a wait but with a great selection of drinks available and the promise of some fine food to come, its not too much of a hassle! The one room you can book is the upstairs private dining room, which has a collection of vintage porn on the walls.

Midlred?s is at 45 Lexington Street, London, W1F 9AN. Our review.

Vanilla Black
Vanilla Black takes inventive vegetarian cooking to the highest level. This Michelin recommended restaurant originally opened in York before moving to its current location in the heart of the city. Since then it has delighted restaurant goers with its funky, modern take on vegetarian fine dining.

The mouth watering culinary creations on offer include such delights as ?fried mushroom mousse and pernod pancakes with whipped cider, fennel and butternut squash?.

A great location for a treat or a celebratory meal. The set menus help to provide a more affordable option. Lunch is available at ?18.50 for two course or ?23.50 for three.

Vanilla Black is at 17-18 Tooks Court, London, EC4A 1LB. Our review.

The Gate
Hammersmith?s The Gate?has been a favourite with vegetarians since opening in 1989. Run by the brothers Adrian and Michael Daniel, the food is a fusion of Asian flavours mixed with Mediterranean influences. Starters cost around ?6 with mains varying from ?10 to ?15.

The restaurant also periodically offers cookery workshops and the chefs have published two recipe books. Due to the ongoing success of the place, the brothers are opening a second restaurant in Islington on 1 June.

The Gate Hammersmith is at 51 Queen Caroline Street London, W6 9QL. Our review.

Food for Thought
Covent Garden?s Food for Thought?is a well priced, friendly caf? that is a great option for a quick bite while out shopping. The menu changes regularly but often includes bean stews, quiches, burritos and much more. You can get a fantastic main with a plate stacked full of salads and sides for between ?5 and ?8.

As the caf? is quite small and gets pretty busy. It can be a good idea to go either a bit before or after the lunchtime rush.

Food for Thought is at 31 Neal Street, Covent Garden, London WC2H 9PR

Vitao
Serving up a buffet of wholesome salads, bean- and pulse-based concoctions and much else besides, this friendly and inviting vegan caf? has become a favourite among London?s vegetarians, and visitors to Soho alike.

All the food on offer is organic, wholesome and well priced. All you can eat costs between ?6 and ?9 depending on the time of day.

Vitao is at 74 Wardour Street, London, W1F 0TE.

The Bonnington Caf?
The Bonnington Caf??is a community caf? run by a collective of volunteer chefs. The menu rotates with the cooks and there are normally a couple of different options available.

It started life as a squat caf? during the 1980s and has been a fixture of the community ever since. Starters and desserts cost ?3 with mains coming in at ?7. The Bonnington is a quirky, friendly and fun place to have a meal. It?s also good to support a local community enterprise that?s run on a not for profit basis.

The Bonnington Caf? is at 11 Vauxhall Grove, SW8 1TD. Our review.

Sagar
With restaurants in Hammersmith, the West End and Covent Garden, Sagar offers some of the best-value vegetarian Indian food available in London.?The menu is based on dishes from south India and offers incredible value with selection plates and Thalis available at lunchtime for around ?5. They also serve these?preposterously?large crispy roll things.

Sagar Hammersmith is at 157 King Street, London, W6 9JT
Sagar West End is at 17A Percy Street off Tottenham Court Road, London, W1T 1DU
Sagar Covent Garden is at 31 Catherine Street, London, WC2B 5JS

Manna
Primrose Hill?s Manna has been nominated as the best vegetarian restaurant in London during this vegetarian week. Its an accolade that is much deserved.

Manna offers modern, stylish and inventive vegetarian food that takes in a huge range of influences. With dishes varying from organic bangers and mash to burritos, Indian dishes and tofu based concoctions, there is something for everyone here. Starters are approximately ?8 with mains coming in around ?14. Truly exciting veggie food.

Manna is at 4 Erskine Road Primrose Hill, London NW3 3AJ

Tibits
Situated in Piccadilly, Tibits is one of the capital?s best vegetarian and vegan buffets. Offering eat-in and take-away options, Tibits serves up a diverse selection of enticing fresh flavours with dishes taking in salads, African cuisine, Asian influences and much more.

With all this on offer alongside a well stocked bar, Tibits is a great place to drop into if you?re out in central London.

Tibits is at 12-14 Hendon Street, London, W1B 4DA

Reader suggestions
OK, that?s our recommendations. We?d love to hear your favourites, though, and we?ll add them here.

From Twitter:
@paddy_wagstaff suggests Rasa
@DelveBand says inSpiral Lounge?in Camden has great food and lovely people
@bonny_vivante recommends ?Amico Bio at (ironically) Smithfields for great organic Italian vegetarian dishes. Omnivore friends have been uniformly impressed?

From the comments:
James suggests Woodlands in Panton Street?? looks like they also have branches in Hampstead and Marylebone
Probably Jon says Pogo Cafe in Hackney and?Jai Krishna on Stroud Green Road or Turnpike Lane

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Saturday, May 26, 2012

Culinary India, a two-day workshop in Boulder

If you've been a reader for even a little while, you know how I feel about the Indian food served by Indian restaurants that dot the US restaurant scene.?Both you and I know that the essence of Indian cooking has been lost in cream-laden curries that masquerade as Indian food.?Say it with me: There is more to Indian cooking than chicken tikka masala, saag paneer and naan.?There! I feel so much better already!

It has been, and continues to be, my passion to bring home-style Indian food to a wider audience, first by writing this blog, and subsequently, through a series of demos and workshops?? the first of which is here: Culinary India.

Culinary India, hosted by Escoffier School of Culinary Arts Boulder, is a workshop steeped in the traditions of India, using as much local produce as possible. Joining me as instructors are three of the very best chefs, instructors and food enthusiasts I know:

Suvir Saran, who made waves with a grand exit last summer on Bravo TV's Top Chef Masters, needs no introduction! His cookbooks have brought Indian cooking within reach of anyone interested in the flavors of Indian cooking, without overwhelming the cook or the palate.?His cooking embodies his lifelong passion for the traditional flavors of Indian cooking and that resonates very strongly with me. I am particularly in love with his lamb kababs and cardamom roasted cauliflower?(recipe on Cooking Boulder). Suvir has written several cookbooks, the latest of which ?Masala Farm ? is about Suvir's life as an organic farmer, punctuated by recipes that are?light on the fuss and big on the flavor, using Indian techniques and flavors that bring an exciting freshness to the table.?Suvir travels extensively to teach audiences, ranging from home cooks and fellow chefs to physicians and nutritionists. Don't miss this opportunity to learn from a witty and accomplished chef!Ammini Ramachandran?is rather well-known on this blog and for good reason! She is the author of?Grains, Greens and Grated Coconuts, that weaves history with the traditions and culture in which it is rooted. It is my favorite Indian vegetarian cookbook and it was?among the four self-published cookbooks that ranked #76 in Saveur's Tenth Annual 100 List in 2008. It's very difficult for me to pick my favorite recipes from this cookbook as everything I have cooked has been exemplary, but I am partial to her okra kichadi and tomato chutney.?A former financial analyst,?Ammini is a prolific writer and her work has been published in?The Flavors of Asia by the Culinary Institute of America, Flavor & Fortune, Storied Dishes and Cultural Encyclopedia of Vegetarianism. She is also a regular contributor to Zester Daily, an award-winning online publication produced by an international collection of experienced journalists, food writers and wine experts.?Ammini teaches Indian cooking classes at Central Market Cooking Schools in Texas and the Institute of Culinary Education, New York. Don't miss this opportunity to learn from a food historian and meticulous cook!Asha Gomez has taken the Atlanta food scene by storm, not once but twice. She?was the mastermind behind Spice Route Supper Club, an underground supper club,?where she explored the breadth of India?s culinary traditions by serving five-course meals with themes that focused on a region or an ingredient. After a successful year of home entertaining through her Supper Club, Asha opened her own Indian restaurant, Cardamom Hill in Atlanta.?Don't miss this opportunity to learn from a supper club enthusiast who is now a respected chef in Atlanta!

This interactive cooking demonstration will explore and explain eight recipes each day using as much local produce as possible. Saturday?s workshop will be entirely dedicated to vegetarian recipes while Sunday's menu will include meat and seafood. There are limited seats so be sure to sign up as soon as possible so that you don't miss out on this unique experience!

Join us!
Saturday & Sunday, June 16th - 17th
Time: 10:00 AM - 2:00 PM on both days

Register for Culinary India


I made another gem from Ammini's cookbook, Grains, Greens and Grated Coconuts, last week before rushing off to the Escoffier Boulder's Spring Thyme Open House. It came together quickly and was the perfect meal for my family while I enjoyed the treats that the Escoffier chefs made for the Open House!


  • 2 cups long-grain rice
  • 1/2 tsp turmeric
  • Salt to taste
  • 2 tbsp fresh lemon juice
  • 1/2 cup sesame oil
  • 1 and 1/2 tsp mustard seeds
  • 1 and 1/2 tbsp cleaned urad dal
  • 1 and 1/2 tbsp cleaned chana dal
  • 2-3 dried red cayenne, serrano, or Thai chiles, halved or sliced fine
  • 1/4 cup halved cashew nuts
  • 1/4 cup roasted unsalted peanuts
  • 1/4 tsp asafetida
  • 12-15 fresh curry leaves
  • 2 tbsp chopped cilantro leaves (optional)


  1. Cook the rice along with salt and turmeric, according to package directions. Transfer to a large, flat serving bowl or dish. Sprinkle with lemon juice and toss well.
  2. Heat the oil in a heavy skillet and add mustard seeds.
  3. When the mustard seeds start popping, add urad dal and chana dal, and fry until they turn golden brown.
  4. Lower the heat, and add the chile peppers, nuts, asafetida, and curry leaves. Fry until the nuts are slightly browned.
  5. Remove from the stove and pour this spice mixture over the rice. Stir gently to coat the rice with the spice mix.
  6. Garnish with the cilantro leaves, if using.


Notes:
  • Traditionally, sesame oil is used but it may be substituted with either ghee or vegetable oil. I love the flavor of ghee in this rice!
  • I made the mistake of cooking the rice without salt and turmeric powder, which is why my rice is not evenly colored.?I sprinkled turmeric powder and salt on the cooked rice, along with the lemon juice. It did not detract from the expected flavors of lemon rice.?This mistake was a revelation because now I know what to do with volumes of leftover rice!?
  • I also like my lemon rice a little more lemony, so I add another tablespoon of fresh lemon juice.
  • Variations of this rice dish are made throughout southern India. It makes for a great brunch when served with other Southern Indian delights like rasam, thoran, and vadas.

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Orthogonal frequency-division multiplexing : ???????(Ruan's ...

Orthogonal frequency-division multiplexing?(OFDM) is a method of encoding digital data on multiple carrier frequencies. OFDM has developed into a popular scheme for?wideband?digital communication, whether?wireless?or over?copper?wires, used in applications such as digital television and audio broadcasting,?DSL?broadband internet access, wireless networks, and?4G?mobile communications.

OFDM is essentially identical to?coded OFDM?(COFDM) and?discrete multi-tone modulation?(DMT), and is a?frequency-division multiplexing?(FDM) scheme used as a digital multi-carrier?modulation?method. A large number of closely spacedorthogonal?sub-carrier signals?are used to carry?data. The data is divided into several parallel data streams or channels, one for each sub-carrier. Each sub-carrier is modulated with a conventional modulation scheme (such as?quadrature amplitude modulation?or?phase-shift keying) at a low?symbol rate, maintaining total data rates similar to conventional?single-carriermodulation schemes in the same bandwidth.

The primary advantage of OFDM over single-carrier schemes is its ability to cope with severe?channel?conditions (for example,attenuation?of high frequencies in a long copper wire, narrowband?interference?and frequency-selective?fading?due to?multipath) without complex equalization filters. Channel?equalization?is simplified because OFDM may be viewed as using many slowly modulated?narrowband?signals rather than one rapidly modulated?wideband?signal. The low symbol rate makes the use of a?guard interval?between symbols affordable, making it possible to eliminate?intersymbol interference?(ISI) and utilize echoes and time-spreading (that shows up as?ghosting?on analogue TV) to achieve a?diversity gain, i.e. a?signal-to-noise ratio?improvement. This mechanism also facilitates the design of?single frequency networks?(SFNs), where several adjacent transmitters send the same signal simultaneously at the same frequency, as the signals from multiple distant transmitters may be combined constructively, rather than interfering as would typically occur in a traditional single-carrier system.

Example of applications

The following list is a summary of existing OFDM based standards and products. For further details, see the?Usage?section at the end of the article.

Cable

  • ADSL?and?VDSL?broadband access via?POTS?copper?wiring.
  • DVB-C2, an enhanced version of the?DVB-C?digital cable TV standard.
  • Power line communication?(PLC).
  • ITU-T?G.hn, a standard which provides high-speed local area networking of existing home wiring (power lines, phone lines and coaxial cables).
  • TrailBlazer?telephone line?modems.
  • Multimedia over Coax Alliance?(MoCA) home networking.

Wireless

  • The?wireless LAN?(WLAN) radio interfaces?IEEE 802.11a,?g,?n?and?HIPERLAN/2.
  • The?digital radio?systems?DAB/EUREKA 147,?DAB+,?Digital Radio Mondiale,?HD Radio,?T-DMB?and?ISDB-TSB.
  • The terrestrial?digital TV?systems?DVB-T?and?ISDB-T.
  • The terrestrial?mobile TV?systems?DVB-H,?T-DMB,?ISDB-T?and?MediaFLO?forward link.
  • The wireless?personal area network?(PAN)?ultra-wideband?(UWB)?IEEE 802.15.3a?implementation suggested by?WiMedia Alliance.

The OFDM based?multiple access?technology?OFDMA?is also used in several?4G?and pre-4G?cellular networks?and?mobile broadband?standards:

  • The mobility mode of the?wireless MAN/broadband wireless access?(BWA) standard?IEEE 802.16e?(or Mobile-WiMAX).
  • The?mobile broadband wireless access?(MBWA) standard?IEEE 802.20.
  • the downlink of the?3GPP?Long Term Evolution?(LTE) fourth generation mobile broadband standard. The radio interface was formerly named?High Speed OFDM Packet Access?(HSOPA), now named?Evolved UMTS Terrestrial Radio Access?(E-UTRA).

Key features

The advantages and disadvantages listed below are further discussed in the?Characteristics and principles of operation?section below.

Summary of advantages

  • Can easily adapt to severe channel conditions without complex time-domain equalization.
  • Robust against narrow-band co-channel interference.
  • Robust against?intersymbol interference?(ISI) and fading caused by multipath propagation.
  • High?spectral efficiency?as compared to conventional modulation schemes, spread spectrum, etc.
  • Efficient implementation using?Fast Fourier Transform?(FFT).
  • Low sensitivity to time synchronization errors.
  • Tuned sub-channel receiver filters are not required (unlike conventional?FDM).
  • Facilitates?single frequency networks?(SFNs); i.e., transmitter?macrodiversity.

Summary of disadvantages

  • Sensitive to?Doppler shift.
  • Sensitive to frequency synchronization problems.
  • High?peak-to-average-power ratio?(PAPR), requiring linear transmitter circuitry, which suffers from poor power efficiency.
  • Loss of efficiency caused by?cyclic prefix/guard interval.

Characteristics and principles of operation

Orthogonality

Conceptually, OFDM is a specialized FDM, the additional constraint being: all the carrier signals are orthogonal to each other.

In OFDM, the sub-carrier frequencies are chosen so that the sub-carriers are?orthogonal?to each other, meaning that?cross-talk?between the sub-channels is eliminated and inter-carrier guard bands are not required. This greatly simplifies the design of both the?transmitter?and the?receiver; unlike conventional?FDM, a separate filter for each sub-channel is not required.

The orthogonality requires that the sub-carrier spacing is?\scriptstyle\Delta f \,=\, \frac{k}{T_U}?Hertz, where?TU?seconds?is the useful symbol duration (the receiver side window size), and?k?is a positive integer, typically equal to 1. Therefore, with?N?sub-carriers, the total passband bandwidth will be?B???N??f?(Hz).

The orthogonality also allows high?spectral efficiency, with a total symbol rate near the?Nyquist rate?for the equivalent baseband signal (i.e. near half the Nyquist rate for the double-side band physical passband signal). Almost the whole available frequency band can be utilized. OFDM generally has a nearly ?white? spectrum, giving it benign electromagnetic interference properties with respect to other co-channel users.

A simple example: A useful symbol duration?TU?= 1?ms would require a sub-carrier spacing of?\scriptstyle\Delta f \,=\, \frac{1}{1\,\mathrm{ms}} \,=\, 1\,\mathrm{kHz}?(or an integer multiple of that) for orthogonality.?N?= 1,000 sub-carriers would result in a total passband bandwidth of?N?f = 1?MHz. For this symbol time, the required bandwidth in theory according to Nyquist is N/2TU?= 0.5?MHz (i.e., half of the achieved bandwidth required by our scheme). If a guard interval is applied (see below), Nyquist bandwidth requirement would be even lower. The FFT would result in?N?= 1,000 samples per symbol. If no guard interval was applied, this would result in a base band complex valued signal with a sample rate of 1?MHz, which would require a baseband bandwidth of 0.5 MHz according to Nyquist. However, the passband RF signal is produced by multiplying the baseband signal with a carrier waveform (i.e., double-sideband quadrature amplitude-modulation) resulting in a passband bandwidth of 1?MHz. A single-side band (SSB) or vestigial sideband (VSB) modulation scheme would achieve almost half that bandwidth for the same symbol rate (i.e., twice as high spectral efficiency for the same symbol alphabet length). It is however more sensitive to multipath interference.

OFDM requires very accurate frequency synchronization between the receiver and the transmitter; with frequency deviation the sub-carriers will no longer be orthogonal, causing?inter-carrier interference?(ICI) (i.e., cross-talk between the sub-carriers). Frequency offsets are typically caused by mismatched transmitter and receiver oscillators, or by?Doppler shift?due to movement. While Doppler shift alone may be compensated for by the receiver, the situation is worsened when combined with?multipath, as reflections will appear at various frequency offsets, which is much harder to correct. This effect typically worsens as speed increases,[1]?and is an important factor limiting the use of OFDM in high-speed vehicles. Several techniques for ICI suppression are suggested, but they may increase the receiver complexity.

Implementation using the FFT algorithm

The orthogonality allows for efficient modulator and demodulator implementation using the FFT algorithm on the receiver side, and inverse FFT on the sender side. Although the principles and some of the benefits have been known since the 1960s, OFDM is popular for wideband communications today by way of low-cost?digital signal processing?components that can efficiently calculate the FFT.

Guard interval for elimination of intersymbol interference

One key principle of OFDM is that since low symbol rate modulation schemes (i.e., where the symbols are relatively long compared to the?channel?time characteristics) suffer less from?intersymbol interference?caused by?multipath propagation, it is advantageous to transmit a number of low-rate streams in parallel instead of a single high-rate stream. Since the duration of each symbol is long, it is feasible to insert a?guard interval?between the OFDM symbols, thus eliminating the intersymbol interference.

The guard interval also eliminates the need for a?pulse-shaping filter, and it reduces the sensitivity to time synchronization problems.

A simple example: If one sends a million symbols per second using conventional single-carrier modulation over a wireless channel, then the duration of each symbol would be one microsecond or less. This imposes severe constraints on synchronization and necessitates the removal of multipath interference. If the same million symbols per second are spread among one thousand sub-channels, the duration of each symbol can be longer by a factor of a thousand (i.e., one millisecond) for orthogonality with approximately the same bandwidth. Assume that a guard interval of 1/8 of the symbol length is inserted between each symbol. Intersymbol interference can be avoided if the multipath time-spreading (the time between the reception of the first and the last echo) is shorter than the guard interval (i.e., 125 microseconds). This corresponds to a maximum difference of 37.5 kilometers between the lengths of the paths.

The?cyclic prefix, which is transmitted during the guard interval, consists of the end of the OFDM symbol copied into the guard interval, and the guard interval is transmitted followed by the OFDM symbol. The reason that the guard interval consists of a copy of the end of the OFDM symbol is so that the receiver will integrate over an integer number of sinusoid cycles for each of the multipaths when it performs OFDM demodulation with the FFT.

Simplified equalization

The effects of frequency-selective channel conditions, for example fading caused by multipath propagation, can be considered as constant (flat) over an OFDM sub-channel if the sub-channel is sufficiently narrow-banded (i.e., if the number of sub-channels is sufficiently large). This makes frequency domain?equalization?possible at the?receiver, which is far simpler than the time-domain equalization used in conventional single-carrier modulation. In OFDM, the equalizer only has to multiply each detected sub-carrier (each Fourier coefficient) in each OFDM symbol by a constant complex number, or a rarely changed value.

Our example: The OFDM equalization in the above numerical example would require one complex valued multiplication per subcarrier and symbol (i.e.,?\scriptstyle N \,=\, 1000complex multiplications per OFDM symbol; i.e., one million multiplications per second, at the receiver). The FFT algorithm requires?\scriptstyle N \log_2 N \,=\, 10,000?[this is imprecise: over half of these complex multiplications are trivial, i.e. = to 1 and are not implemented in software or HW]. complex-valued multiplications per OFDM symbol (i.e., 10 million multiplications per second), at both the receiver and transmitter side. This should be compared with the corresponding one million symbols/second single-carrier modulation case mentioned in the example, where the equalization of 125 microseconds time-spreading using a?FIR filter?would require, in a naive implementation, 125 multiplications per symbol (i.e., 125 million multiplications per second). FFT techniques can be used to reduce the number of multiplications for an?FIR filter?based time-domain equalizer to a number comparable with OFDM, at the cost of delay between reception and decoding which also becomes comparable with OFDM.

If differential modulation such as?DPSK?or?DQPSK?is applied to each sub-carrier, equalization can be completely omitted, since these non-coherent schemes are insensitive to slowly changing amplitude and?phase distortion.

In a sense, improvements in FIR equalization using FFTs or partial FFTs leads mathematically closer to OFDM,[citation needed]?but the OFDM technique is easier to understand and implement, and the sub-channels can be independently adapted in other ways than varying equalization coefficients, such as switching between differentQAM?constellation patterns and error-correction schemes to match individual sub-channel noise and interference characteristics.[clarification needed]

Some of the sub-carriers in some of the OFDM symbols may carry?pilot signals?for measurement of the channel conditions[2][3]?(i.e., the equalizer gain and phase shift for each sub-carrier). Pilot signals and training symbols (preambles) may also be used for time synchronization (to avoid intersymbol interference, ISI) and frequency synchronization (to avoid inter-carrier interference, ICI, caused by Doppler shift).

OFDM was initially used for wired and stationary wireless communications. However, with an increasing number of applications operating in highly mobile environments, the effect of dispersive fading caused by a combination of multi-path propagation and?doppler shift?is more significant. Over the last decade, research has been done on how to equalize OFDM transmission over doubly selective channels.

Channel coding and interleaving

OFDM is invariably used in conjunction with?channel coding?(forward error correction), and almost always uses frequency and/or time?interleaving.

Frequency (subcarrier)?interleaving?increases resistance to frequency-selective channel conditions such as?fading. For example, when a part of the channel bandwidth fades, frequency interleaving ensures that the bit errors that would result from those subcarriers in the faded part of the bandwidth are spread out in the bit-stream rather than being concentrated. Similarly, time interleaving ensures that bits that are originally close together in the bit-stream are transmitted far apart in time, thus mitigating against severe fading as would happen when travelling at high speed.

However, time interleaving is of little benefit in slowly fading channels, such as for stationary reception, and frequency interleaving offers little to no benefit for narrowband channels that suffer from flat-fading (where the whole channel bandwidth fades at the same time).

The reason why interleaving is used on OFDM is to attempt to spread the errors out in the bit-stream that is presented to the error correction decoder, because when such decoders are presented with a high concentration of errors the decoder is unable to correct all the bit errors, and a burst of uncorrected errors occurs. A similar design of audio data encoding makes compact disc (CD) playback robust.

A classical type of error correction coding used with OFDM-based systems is?convolutional coding, often?concatenated?with?Reed-Solomon?coding. Usually, additional interleaving (on top of the time and frequency interleaving mentioned above) in between the two layers of coding is implemented. The choice for Reed-Solomon coding as the outer error correction code is based on the observation that the Viterbi decoder used for inner convolutional decoding produces short errors bursts when there is a high concentration of errors, and Reed-Solomon codes are inherently well-suited to correcting bursts of errors.

Newer systems, however, usually now adopt near-optimal types of error correction codes that use the turbo decoding principle, where the decoder iterates towards the desired solution. Examples of such error correction coding types include?turbo codes?and?LDPC?codes, which perform close to the?Shannon limit?for the Additive White Gaussian Noise (AWGN) channel. Some systems that have implemented these codes have concatenated them with either Reed-Solomon (for example on the?MediaFLOsystem) or?BCH codes?(on the?DVB-S2?system) to improve upon an?error floor?inherent to these codes at high?signal-to-noise ratios.

Adaptive transmission

The resilience to severe channel conditions can be further enhanced if information about the channel is sent over a return-channel. Based on this feedback information, adaptive?modulation, channel coding and power allocation may be applied across all sub-carriers, or individually to each sub-carrier. In the latter case, if a particular range of frequencies suffers from interference or attenuation, the carriers within that range can be disabled or made to run slower by applying more robust modulation or?error coding?to those sub-carriers.

The term?discrete multitone modulation?(DMT) denotes OFDM based communication systems that adapt the transmission to the channel conditions individually for each sub-carrier, by means of so called?bit-loading. Examples are?ADSL?and?VDSL.

The upstream and downstream speeds can be varied by allocating either more or fewer carriers for each purpose. Some forms of?rate-adaptive DSL?use this feature in real time, so that the bitrate is adapted to the co-channel interference and bandwidth is allocated to whichever subscriber needs it most.

OFDM extended with multiple access

OFDM in its primary form is considered as a digital modulation technique, and not a multi-user?channel access method, since it is utilized for transferring one bit stream over one communication?channel?using one sequence of OFDM symbols. However, OFDM can be combined with?multiple access?using time, frequency or coding separation of the users.

In?Orthogonal Frequency Division Multiple Access?(OFDMA),?frequency-division multiple access?is achieved by assigning different OFDM sub-channels to different users. OFDMA supports differentiated?quality of service?by assigning different number of sub-carriers to different users in a similar fashion as in?CDMA, and thus complex packet scheduling or?Media Access Control?schemes can be avoided. OFDMA is used in:

  • the mobility mode of the?IEEE 802.16?Wireless MAN standard, commonly referred to as WiMAX,
  • the?IEEE 802.20?mobile Wireless MAN standard, commonly referred to as MBWA,
  • the?3GPP Long Term Evolution?(LTE) fourth generation mobile broadband standard downlink. The radio interface was formerly named High Speed OFDM Packet Access (HSOPA), now named Evolved UMTS Terrestrial Radio Access (E-UTRA).
  • the now defunct?Qualcomm/3GPP2?Ultra Mobile Broadband?(UMB) project, intended as a successor of?CDMA2000, but replaced by LTE.

OFDMA is also a candidate access method for the?IEEE 802.22?Wireless Regional Area Networks?(WRAN). The project aims at designing the first?cognitive radio?based standard operating in the VHF-low UHF spectrum (TV spectrum).

In?Multi-carrier code division multiple access?(MC-CDMA), also known as OFDM-CDMA, OFDM is combined with CDMA spread spectrum communication for coding separation of the users. Co-channel interference can be mitigated, meaning that manual?fixed channel allocation?(FCA) frequency planning is simplified, or complexdynamic channel allocation?(DCA) schemes are avoided.

Space diversity

In OFDM based wide area broadcasting, receivers can benefit from receiving signals from several spatially dispersed transmitters simultaneously, since transmitters will only destructively interfere with each other on a limited number of sub-carriers, whereas in general they will actually reinforce coverage over a wide area. This is very beneficial in many countries, as it permits the operation of national?single-frequency networks?(SFN), where many transmitters send the same signal simultaneously over the same channel frequency. SFNs utilise the available spectrum more effectively than conventional multi-frequency broadcast networks (MFN), where program content is replicated on different carrier frequencies. SFNs also result in a?diversity gain?in receivers situated midway between the transmitters. The coverage area is increased and the outage probability decreased in comparison to an MFN, due to increased received signal strength averaged over all sub-carriers.

Although the guard interval only contains redundant data, which means that it reduces the capacity, some OFDM-based systems, such as some of the broadcasting systems, deliberately use a long guard interval in order to allow the transmitters to be spaced farther apart in an SFN, and longer guard intervals allow larger SFN cell-sizes. A rule of thumb for the maximum distance between transmitters in an SFN is equal to the distance a signal travels during the guard interval ? for instance, a guard interval of 200 microseconds would allow transmitters to be spaced 60?km apart.

A?single frequency network?is a form of transmitter?macrodiversity. The concept can be further utilized in?dynamic single-frequency networks?(DSFN), where the SFN grouping is changed from timeslot to timeslot.

OFDM may be combined with other forms of?space diversity, for example?antenna arrays?and?MIMO?channels. This is done in the [[IEEE802.11?Wireless LAN?standard.

Linear transmitter power amplifier

An OFDM signal exhibits a high?peak-to-average power ratio (PAPR)?because the independent phases of the sub-carriers mean that they will often combine constructively. Handling this high PAPR requires:

  • a high-resolution?digital-to-analogue converter?(DAC) in the transmitter
  • a high-resolution?analogue-to-digital converter?(ADC) in the receiver
  • a linear?signal chain.

Any non-linearity in the signal chain will cause?intermodulation distortion?that

  • raises the noise floor
  • may cause inter-carrier interference
  • generates out-of-band spurious radiation.

The linearity requirement is demanding, especially for transmitter RF output circuitry where amplifiers are often designed to be non-linear in order to minimise power consumption. In practical OFDM systems a small amount of peak clipping is allowed to limit the PAPR in a judicious trade-off against the above consequences. However, the transmitter output filter which is required to reduce out-of-band spurs to legal levels has the effect of restoring peak levels that were clipped, so clipping is not an effective way to reduce PAPR.

Although the spectral efficiency of OFDM is attractive for both terrestrial and space communications, the high PAPR requirements have so far limited OFDM applications to terrestrial systems.

Idealized system model

This section describes a simple idealized OFDM system model suitable for a time-invariant?AWGN?channel.

Transmitter

An OFDM carrier signal is the sum of a number of orthogonal sub-carriers, with?baseband?data on each sub-carrier being independently modulated commonly using some type of?quadrature amplitude modulation?(QAM) or?phase-shift keying?(PSK). This composite baseband signal is typically used to modulate a main?RF?carrier.

\scriptstyle s[n]? />?is a serial stream of binary digits. By?inverse multiplexing, these are first demultiplexed into?<img src=?parallel streams, and each one mapped to a (possibly complex) symbol stream using some modulation constellation (QAM,?PSK, etc.). Note that the constellations may be different, so some streams may carry a higher bit-rate than others.

An inverse?FFT?is computed on each set of symbols, giving a set of complex time-domain samples. These samples are then?quadrature-mixed to passband in the standard way. The real and imaginary components are first converted to the analogue domain using?digital-to-analogue converters?(DACs); the analogue signals are then used to modulate?cosine?and?sine?waves at the?carrier?frequency,?\scriptstyle f_c, respectively. These signals are then summed to give the transmission signal,?\scriptstyle s(t).

Receiver

The receiver picks up the signal?\scriptstyle r(t), which is then quadrature-mixed down to baseband using cosine and sine waves at the carrier frequency. This also creates signals centered on?\scriptstyle 2 f_c, so low-pass filters are used to reject these. The baseband signals are then sampled and digitised using?analog-to-digital converters?(ADCs), and a forwardFFT?is used to convert back to the frequency domain.

This returns?\scriptstyle N?parallel streams, each of which is converted to a binary stream using an appropriate symbol?detector. These streams are then re-combined into a serial stream,?\scriptstyle {\hat s}[n], which is an estimate of the original binary stream at the transmitter.

Mathematical description

If?\scriptstyle N?sub-carriers are used, and each sub-carrier is modulated using?\scriptstyle M?alternative symbols, the OFDM symbol alphabet consists of?\scriptstyle M^N?combined symbols.

The?low-pass equivalent?OFDM signal is expressed as:

<br />
\ \nu(t)=\sum_{k=0}^{N-1}X_k e^{j2\pi kt/T}, \quad 0\le t<T,<br />

where?\scriptstyle\{X_k\}?are the data symbols,?\scriptstyle N?is the number of sub-carriers, and?\scriptstyle T?is the OFDM symbol time. The sub-carrier spacing of?\scriptstyle \frac{1}{T}?makes them orthogonal over each symbol period; this property is expressed as:

<br />
\begin{align}<br />
 &\frac{1}{T}\int_0^{T}\left(e^{j2\pi k_1t/T}\right)^*<br />
\left(e^{j2\pi k_2t/T}\right)dt \\<br />
 = &\frac{1}{T}\int_0^{T}e^{j2\pi (k_2-k_1)t/T}dt = \delta_{k_1k_2}<br />
\end{align}<br />

where?\scriptstyle (\cdot)^*?denotes the?complex conjugate?operator and?\scriptstyle\delta\,?is the?Kronecker delta.

To avoid intersymbol interference in multipath fading channels, a guard interval of length?\scriptstyle T_\mathrm{g}?is inserted prior to the OFDM block. During this interval, a?cyclic prefix?is transmitted such that the signal in the interval?\scriptstyle -T_\mathrm{g} \,\le\, t \,<\, 0?equals the signal in the interval?\scriptstyle (T-T_\mathrm{g}) \,\le\, t \,<\, T. The OFDM signal with cyclic prefix is thus:

\ \nu(t)=\sum_{k=0}^{N-1}X_ke^{j2\pi kt/T}, \quad -T_\mathrm{g}\le t < T

The low-pass signal above can be either real or complex-valued. Real-valued low-pass equivalent signals are typically transmitted at baseband?wireline applications such as DSL use this approach. For wireless applications, the low-pass signal is typically complex-valued; in which case, the transmitted signal is up-converted to a carrier frequency?\scriptstyle f_c. In general, the transmitted signal can be represented as:

<br />
\begin{align}<br />
s(t) & =  \Re\left\{\nu(t) e^{j2\pi f_c t}\right\} \\<br />
     & = \sum_{k=0}^{N-1}|X_k|\cos\left(2\pi [f_c + k/T]t + \arg[X_k]\right)<br />
\end{align}<br />

Usage

OFDM system comparison table

Key features of some common OFDM based systems are presented in the following table.

Standard name DAB?Eureka 147 DVB-T DVB-H DMB-T/H DVB-T2 IEEE 802.11a
Ratified year 1995 1997 2004 2006 2007 1999
Frequency range of
today?s equipment
(MHz)
174?240
1,452?1,492
470?862
174?230
470?862 470?862 4,915?5,825
Channel spacing,?B
(MHz)
1.712 6, 7, 8 5, 6, 7, 8 8 1.7, 5, 6, 7, 8, 10 20
FFT size (k=1,024) Mode I: 2k
Mode II: 512
Mode III: 256
Mode IV: 1k
2k, 8k 2k, 4k, 8k 1 (single-carrier)
4k (multi-carrier)
1k, 2k, 4k, 8k, 16k, 32k 64
Number of non-silent sub-carriers,?N Mode I: 1,536
Mode II: 384
Mode III: 192
Mode IV: 768
2K mode: 1,705
8K mode: 6,817
1,705, 3,409, 6,817 1 (single-carrier)
3,780 (multi-carrier)
853-27,841 (1K normal to 32K extended carrier mode) 52
Sub-carrier modulation scheme ??4-DQPSK QPSK,[7]?16QAM or 64QAM QPSK,[7]?16QAM or 64QAM 4QAM,[7]?4QAM-NR,[8]
16QAM, 32QAM and 64QAM.
QPSK, 16QAM, 64QAM, 256QAM BPSK, QPSK,[7]16QAM or 64QAM
Useful symbol length,?TU
(?s)
Mode I: 1,000
Mode II: 250
Mode III: 125
Mode IV: 500
2K mode: 224
8K mode: 896
224, 448, 896 500 (multi-carrier) 112-3,584 (1K to 32K mode on 8?MHz channel) 3.2
Additional guard interval,?TG
(fraction of?TU)
24.6% (all modes) 1?4,?1?8,?1?16,?1?32 1?4,?1?8,?1?16,?1?32 1?4,?1?6,?1?9 1/128, 1/32, 1/16, 19/256, 1/8, 19/128, 1/4.
(For 32k mode maximum 1/8)
1?4
Sub-carrier spacing
\scriptstyle \Delta f \,=\, \frac{1}{T_U} \,\approx\, \frac{B}{N}
(Hz)
Mode I: 1,000
Mode II: 4,000
Mode III: 8,000
Mode IV: 2,000
2K mode: 4,464
8K mode: 1,116
4,464, 2,232, 1,116 8 M (single-carrier)
2,000 (multi-carrier)
279-8,929 (32K down to 1K mode) 312.5K
Net bit rate,?R
(Mbit/s)
0.576?1.152 4.98?31.67
(typically 24.13)
3.7?23.8 4.81?32.49 Typically 35.4 6?54
Link spectral efficiency?R/B
(bit/s/Hz)
0.34?0.67 0.62?4.0 (Typ 3.0) 0.62?4.0 0.60?4.1 0.87-6.65 0.30?2.7
Inner?FEC Conv coding?with
Equal error protection code rates
1?4,?3?8,?4?9,?1?2,?4?7,?2?3,?3?4,4?5
Unequal error protection with av. code rates of
~0.34, 0.41, 0.50, 0.60, and 0.75
Conv. coding?with code rates1?2,?2?3,?3?4,?5?6, or?7?8 Conv. coding?with code rates1?2,?2?3,?3?4,?5?6, or7?8 LDPC?with code rates0.4, 0.6 or 0.8 LDPC?1/2, 3/5, 2/3, 3/4, 4/5, 5/6 Conv. coding?with code rates1?2,?2?3, or?3?4
Outer?FEC?(if any) Optional?RS?(120, 110, t = 5) RS?(204, 188, t=8) RS?(204, 188, t=8) + MPE-FEC BCH code?(762, 752) BCH code
Maximum travelling speed
(km/h)
200?600 53?185
depends on transmission frequency
Time?interleavingdepth
(ms)
384 0.6?3.5 0.6?3.5 200?500 up to 250 (500 with extension frame)
Adaptive transmission
(if any)
None None None None
Multiple access method
(if any)
None None None None
Typical?source coding 192?kbit/s
MPEG2?Audio
layer 2
2?18?Mbit/s
Standard ? HDTV
H.264 or MPEG2
H.264 Not defined
(Video: MPEG-2, H.264 and/or?AVS
Audio:?MP2?or?AC-3)
H.264 or MPEG2

ADSL

OFDM is used in?ADSL?connections that follow the?G.DMT?(ITU G.992.1) standard, in which existing copper wires are used to achieve high-speed data connections.

Long copper wires suffer from attenuation at high frequencies. The fact that OFDM can cope with this frequency selective attenuation and with narrow-band interference are the main reasons it is frequently used in applications such as ADSL?modems. However, DSL cannot be used on every copper pair; interference may become significant if more than 25% of phone lines coming into a?central office?are used for DSL.[citation needed]

For experimental?amateur radio?applications, users have even hooked up?commercial off-the-shelf?ADSL equipment to radio transceivers which simply shift the bands used to the radio frequencies the user has licensed.[citation needed]

Powerline Technology

OFDM is used by many?powerline?devices to extend digital connections through power wiring.?Adaptive modulation?is particularly important with such a noisy channel as electrical wiring.

Some medium speed smart metering?modems, ?Prime? and ?G3? use OFDM at modest frequencies (30-100KHz)with modest numbers of channels (several hundred) in order to overcome the intersymbol interference in the power line environment.[9]?The?IEEE 1901?standards include two incompatible physical layers that both use OFDM.[10]?The?ITU-T?G.hn?standard, which provides high-speed local area networking over existing home wiring (power lines, phone lines and coaxial cables) is based on a PHY layer that specifies OFDM with adaptive modulation and a Low-Density Parity-Check (LDPC) FEC code.

Wireless local area networks (LAN) and metropolitan area networks (MAN)

OFDM is extensively used in wireless LAN and MAN applications, including?IEEE 802.11a/g/n?and?WiMAX.

IEEE 802.11a/g/n operating in the 2.4 and 5?GHz bands, specifies a per-stream airside data rates ranging from 6 to 54?Mbit/s. If both devices can utilize ?HT mode? added with?802.11n?then the top 20?MHz per-stream rate is increased to 72.2?Mbit/s with the option of data rates between 13.5 and 150?Mbit/s using a 40?MHz channel. Four different modulation schemes are used:?BPSK,?QPSK, 16-QAM, and 64-QAM, along with a set of error correcting rates (1/2?5/6). The multitude of choices allows the system to adapt the optimum data rate for the current signal conditions.

Wireless personal area networks (PAN)

OFDM is also now being used in the?WiMedia/Ecma-368 standard?for high-speed wireless?personal area networks?in the 3.1?10.6?GHz ultrawideband spectrum (see MultiBand-OFDM).

Terrestrial digital radio and television broadcasting

Much of Europe and Asia has adopted OFDM for terrestrial broadcasting of digital television (DVB-T,?DVB-H?and?T-DMB) and radio (EUREKA 147?DAB,?Digital Radio Mondiale,?HD Radio?and?T-DMB).

DVB-T

By Directive of the European Commission, all television services transmitted to viewers in the European Community must use a transmission system that has been standardized by a recognized European standardization body,and such a standard has been developed and codified by the DVB Project,?Digital Video Broadcasting (DVB); Framing structure, channel coding and modulation for digital terrestrial television.?Customarily referred to as DVB-T, the standard calls for the exclusive use of COFDM for modulation. DVB-T is now widely used in Europe and elsewhere for terrestrial digital TV.

SDARS

The ground segments of the?Digital Audio Radio Service?(SDARS) systems used by?XM Satellite Radio?and?Sirius Satellite Radio?are transmitted using COFDM.

COFDM vs VSB

The question of the relative technical merits of COFDM versus?8VSB?for terrestrial?digital television?has been a subject of some controversy, especially between Europe and USA. The?United States?has rejected several proposals to adopt the COFDM based?DVB-T?system for its digital television services, and has instead opted for?8VSB(vestigial sideband modulation) operation.

One of the major benefits provided by COFDM is in rendering radio broadcasts relatively immune to?multipath?distortion and signal?fading?due to atmospheric conditions or passing aircraft. Proponents of COFDM argue it resists multipath far better than 8VSB. Early 8VSB?DTV?(digital television) receivers often had difficulty receiving a signal. Also, COFDM allows?single-frequency networks, which is not possible with 8VSB.

However, newer 8VSB receivers are far better at dealing with multipath, hence the difference in performance may diminish with advances in?equalizer?design.[citation needed]Moreover, 8VSB is nearly a?single sideband?transmission scheme, while OFDM can be described as a double sideband modulation scheme. This implies that 8VSB (with 3 bit/symbol) modulation offers similar bit rate and require similar bandwidth as 64QAM OFDM (with 6 bit per symbol and sub-carrier), i.e. similar spectral efficiency in (bit/s)/Hz. However, the small 8VSB alphabet of 8 symbols makes it less prone to noise than the 64QAM alphabet of 64 symbols, resulting in lower?bit-error rate?for the same?carrier-to-noise?ratio in case of multipath propagation. 8VSB requires less power than 64QAM to transmit a signal the same distance (i.e., the received?carrier-to-noise?threshold is lower for the same?bit error rate).

DIGITAL RADIO

COFDM is also used for other radio standards, for?Digital Audio Broadcasting?(DAB), the standard for digital audio broadcasting at?VHF?frequencies, for?Digital Radio Mondiale?(DRM), the standard for digital broadcasting at?shortwave?and?medium wave?frequencies (below 30?MHz) and for?DRM+?a more recently introduced standard for digital audio broadcasting at?VHF?frequencies. (30 to 174?MHz)

The USA again uses an alternate standard, a proprietary system developed by?iBiquity?dubbed?HD Radio. However, it uses COFDM as the underlying broadcast technology to add digital audio to AM (medium wave) and FM broadcasts.

Both Digital Radio Mondiale and HD Radio are classified as?in-band on-channel?systems, unlike Eureka 147 (DAB:?Digital Audio Broadcasting) which uses separate VHF or?UHF?frequency bands instead.

BST-OFDM used in ISDB

The?band-segmented transmission orthogonal frequency division multiplexing?(BST-OFDM) system proposed for Japan (in the?ISDB-T,?ISDB-TSB, and?ISDB-Cbroadcasting systems) improves upon COFDM by exploiting the fact that some OFDM carriers may be modulated differently from others within the same multiplex. Some forms of COFDM already offer this kind of?hierarchical modulation, though BST-OFDM is intended to make it more flexible. The 6?MHz television channel may therefore be ?segmented?, with different segments being modulated differently and used for different services.

It is possible, for example, to send an audio service on a segment that includes a segment composed of a number of carriers, a data service on another segment and a television service on yet another segment?all within the same 6?MHz television channel. Furthermore, these may be modulated with different parameters so that, for example, the audio and data services could be optimized for mobile reception, while the television service is optimized for stationary reception in a high-multipath environment.

Ultra-wideband

Ultra-wideband?(UWB) wireless personal area network technology may also utilise OFDM, such as in Multiband OFDM (MB-OFDM). This UWB specification is advocated by the?WiMedia Alliance?(formerly by both the Multiband OFDM Alliance [MBOA] and the WiMedia Alliance, but the two have now merged), and is one of the competing UWB radio interfaces.

FLASH-OFDM

Fast low-latency access with seamless handoff orthogonal frequency division multiplexing?(Flash-OFDM), also referred to as F-OFDM, was based on OFDM and also specified higher?protocol layers. It was developed by Flarion, and purchased by?Qualcomm?in January 2006.[14][15]?Flash-OFDM was marketed as a packet-switched cellular bearer, to compete with?GSM?and?3G?networks. As an example, 450?MHz frequency bands previously used by?NMT-450?and?C-Net C450?(both 1G analogue networks, now mostly decommissioned) in Europe are being licensed to Flash-OFDM operators.[citation needed]

In?Finland, the license holder Digita began deployment of a nationwide ?@450? wireless network in parts of the country since April 2007. It was purchased by Datame in 2011.[16]?In February 2012 Datame announced they would upgrade the 450 MHz network to competing?cdma2000?technology.[17]

T-Mobile Slovensko?in?Slovakia?offers Flash-OFDM connections[18]?with a maximum downstream speed of 5.3?Mbit/s, and a maximum upstream speed of 1.8?Mbit/s, with a coverage of over 70 percent of Slovak population.[citation needed]

T-Mobile Germany uses Flash-OFDM to backhaul Wi-Fi HotSpots on the Deutsche Bahn?s ICE high speed trains.[citation needed]

American wireless carrier?Nextel Communications?field tested wireless broadband network technologies including Flash-OFDM in 2005.[19]?Sprint?purchased the carrier in 2006 and decided to deploy the mobile version of?WiMAX, which is based on?Scalable Orthogonal Frequency Division Multiple Access?(SOFDMA) technology.[20]

Citizens Telephone Cooperative launched a mobile broadband service based on Flash-OFDM technology to subscribers in parts of?Virginia?in March 2006. The maximum speed available was 1.5?Mbit/s.[21]?The service was discontinued on April 30, 2009.[22]

Digiweb Ltd.?launched a mobile broadband network using Flash-OFDM technology at 872?MHz in July 2007 in Ireland and Digiweb also owns a national 872?MHz license in Norway. Voice handsets are not yet available as of November 2007. The deployment is live in a small area north of Dublin only.[citation needed]

Butler Networks operates a Flash-OFDM network in Denmark at 872?MHz.[citation needed]

In The Netherlands, KPN-telecom will start a pilot around July 2007.[citation needed]

History

  • 1957: Kineplex, multi-carrier HF modem (R.R. Mosier & R.G. Clabaugh)
  • 1966: Chang, Bell Labs: OFDM paper[23]?and patent[24]
  • 1971: Weinstein & Ebert proposed use of FFT and guard interval[25]
  • 1985: Cimini described use of OFDM for mobile communications
  • 1985:?Telebit?Trailblazer Modem introduced incorporating a 512 carrier Packet Ensemble Protocol
  • 1987: Alard & Lasalle: COFDM for digital broadcasting
  • September 1988: TH-CSF LER, first experimental Digital TV link in OFDM, Paris area
  • 1989: OFDM international patent application PCT/FR 89/00546, filed in the name of THOMSON-CSF, Fouche, de Couasnon, Travert, Monnier and all[26]
  • October 1990: TH-CSF LER, first OFDM equipment field test, 34 Mbit/s in an 8?MHz channel, experiments in Paris area
  • December 1990: TH-CSF LER, first OFDM test bed comparison with VSB in Princeton USA
  • September 1992: TH-CSF LER, second generation equipment field test, 70 Mbit/s in an 8?MHz channel, twin polarisations. Wuppertal, Germany
  • October 1992: TH-CSF LER, second generation field test and test bed with BBC, near London, UK
  • 1993: TH-CSF show in Montreux SW, 4 TV channel and one HDTV channel in a single 8?MHz channel
  • 1993: Morris: Experimental 150Mbit/s OFDM wireless LAN
  • 1994:?US 5282222,?Method and apparatus for multiple access between transceivers in wireless communications using OFDM spread spectrum
  • 1995: ETSI?Digital Audio Broadcasting?standard EUreka: first OFDM based standard
  • 1997: ETSI?DVB-T?standard
  • 1998: Magic WAND project demonstrates OFDM modems for wireless LAN
  • 1999:?IEEE 802.11a?wireless LAN standard (Wi-Fi)
  • 2000: Proprietary fixed wireless access (V-OFDM,?FLASH-OFDM, etc.)
  • 2002:?IEEE 802.11g?standard for wireless LAN
  • 2004:?IEEE 802.16?standard for wireless MAN (WiMAX)
  • 2004: ETSI?DVB-H?standard
  • 2004: Candidate for?IEEE 802.15.3a?standard for wireless PAN (MB-OFDM)
  • 2004: Candidate for?IEEE 802.11n?standard for next generation wireless LAN
  • 2005: OFDMA is candidate for the?3GPP Long Term Evolution?(LTE) air interface E-UTRA downlink.
  • 2007: The first complete LTE air interface implementation was demonstrated, including OFDM-MIMO, SC-FDMA and multi-user MIMO uplink[27]

See also

  • Single-carrier frequency-domain-equalization?(SC-FDE)
  • Single-carrier FDMA?(SC-FDMA)
  • ATSC standards
  • Paul Baran

References

  1. ^?Robertson, P.; Kaiser, S. ?The effects of Doppler spreads in OFDM(A) mobile radio systems?, Vehicular Technology Conference, 1999. VTC 1999 ? Fall. IEEE VTS.?Link
  2. ^??Coleri, S. Ergen, M. Puri, A. Bahai, A., Channel estimation techniques based on pilot arrangement in OFDM systems. IEEE Transactions on Broadcasting, Sep 2002. ?Link
  3. ^?Hoeher, P. Kaiser, S. Robertson, P. ?Two-dimensional pilot-symbol-aided channel estimation by Wienerfiltering?. IEEE?International Conference on Acoustics, Speech, and Signal Processing, ICASSP-97, 1997.?Link
  4. ^??Zemen, T.; Mecklenbrauker, C.F., Time-Variant Channel Estimation Using Discrete Prolate Spheroidal Sequences. Signal Processing, IEEE Transactions on, vol.53, no.9, pp. 3597- 3607, Sept. 2005 doi: 10.1109/TSP.2005.853104??Link
  5. ^??Zijian Tang; Cannizzaro, R.C.; Leus, G.; Banelli, P., Pilot-Assisted Time-Varying Channel Estimation for OFDM Systems, Signal Processing, IEEE Transactions on, vol.55, no.5, pp.2226-2238, May 2007 doi: 10.1109/TSP.2007.893198??Link
  6. ^??Hrycak, T.; Das, S.; Matz, G.; Feichtinger, H. G.; Low Complexity Equalization for Doubly Selective Channels Modeled by a Basis Expansion, Signal Processing, IEEE Transactions on, vol.PP, no.99, pp.1-1, 0 doi: 10.1109/TSP.2010.2063426??Link
  7. ^?a?b?c?d?4QAM is equivalent to QPSK
  8. ^?NR refers to Nordstrom-Robinson code
  9. ^?[1]Hoch, Martin; Comparison of PLC G3 and Prime, 2011 IEEE Symposium on Powerline Communication and its Applications
  10. ^?Stefano Galli et al. (July 2008). ?Recent Developments in the Standardization of Power Line Communications within the IEEE?.?IEEE Communications Magazine?46?(7): 64?71.?doi:10.1109/MCOM.2008.4557044.?An overview of P1901 PHY/MAC proposal.
  11. ^?DIRECTIVE 95/47/EC OF THE EUROPEAN PARLIAMENT AND OF THE COUNCIL on the use of standards for the transmission of television signals
  12. ^?ETSI Standard: EN 300 744 V1.5.1 (2004-11).
  13. ^?http://www.commsdesign.com/article/printableArticle.jhtml?articleID=12805708?Agere gets Sirius about satellite radio design
  14. ^??Qualcomm and Exoteq Sign OFDM/OFDMA License Agreement?.?News release?(Qualcomm). August 1, 2007. Retrieved July 23, 2011.
  15. ^??Qualcomm Completes Acquisition Of WiMAX Competitor?.?Network Computing. January 19, 2006. Retrieved July 23, 2011.
  16. ^??Briefly in English?.?@450-Network web site. Datame. Retrieved July 23, 2011.
  17. ^?Aleksi Kolehmainen (February 8, 2012).??@450 siirtyy cdma2000-tekniikkaan ? jopa puhelut mahdollisia??(in Finnish).?Tietoviikko.
  18. ^??Mapy pokrytia??(in Slovak language).?T-Mobile Slovakia web site. Retrieved July 23, 2011.
  19. ^??Nextel Flash-OFDM: The Best Network You May Never Use?.?PC Magazine. March 2, 2005. Retrieved July 23, 2011.
  20. ^?Sascha Segan (August 8, 2006).??Sprint Nextel Goes To The WiMax?.?PC Magazine. Retrieved July 23, 2011.
  21. ^??Citizens Offers First ?Truly Mobile? Wireless Internet in Christiansburg and other parts of the New River Valley?.?News release?(Citizens Wireless). March 28, 2006. Retrieved July 23, 2011.
  22. ^??Thank you for supporting Citizens Mobile Broadband?. Citizens Wireless. 2009. Retrieved July 23, 2011.
  23. ^?Chang, R. W. (1966). Synthesis of band-limited orthogonal signals for multi-channel data transmission,?Bell System Technical Journal?46, 1775-1796.
  24. ^?US 3488445
  25. ^?S.Weinstein and P. Ebert, Data transmission by frequency-division multiplexing using the discrete Fourier transform,?IEEE Transactions on Communication?Technology, vol. 19, no. 5, pp. 628?634, October 1971.
  26. ^?http://www.wipo.int/pctdb/en/wo.jsp?WO=1990/04893
  27. ^?Nortel 3G World Congress Press Release

External links

  • Numerous useful links and resources for OFDM?- WCSP Group ? University of South Florida (USF)
  • WiMAX Forum, WiMAX, the framework standard for 4G mobile personal broadband
  • Stott, 1997?[2]?Technical presentation by J H Stott of the BBC?s R&D division, delivered at the 20 International Television Symposium in 1997; this URL accessed 24 January 2006.
  • Page on Orthogonal Frequency Division Multiplexing at?http://www.iss.rwth-aachen.de/Projekte/Theo/OFDM/node6.html?accessed on 24 September 2007.
  • A tutorial on the significance of Cyclic Prefix (CP) in OFDM Systems.
  • Siemens demos 360 Mbit/s wireless
  • 1994 US Patent 5,282,222 for wireless data transmission?- The patent ?tree? rooted on this patent has upwards of 20,000 nodes and leaves references.
  • An Introduction to Orthogonal Frequency Division Multiplex Technology
  • Short Introduction to OFDM?- Tutorial written by Prof. Debbah, head of the Alcatel-Lucent Chair on flexible radio.
  • Short free tutorial on COFDM?by Mark Massel formerly at STMicroelectronics and in the digital TV industry for many years.
  • A popular book on both COFDM and US ATSC?by Mark Massel
  • A research report by Ali Imran(NUCES)

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