Showing posts with label inflight. Show all posts
Showing posts with label inflight. Show all posts

Saturday, March 30, 2013

Visualized: JetBlue and ViaSat test Fly-Fi in-flight WiFi... from the ground

Visualized JetBlue and ViaSat test FlyFi inflight WiFi from the ground


Gogo's ground-to-air transmitters typically mandate evaluating service while jetting around the country above 10,000 feet. Sure, you don't need to waste fuel flying around an empty airliner, but even the company's small jet can burn through quite a bit of cash. ViaSat, on the other hand, can do much of its service testing on the ground, using that fairly ordinary Ford van pictured just above. The reason, of course, relates to the location of the company's transmitter -- namely, the ViaSat-1 satellite, positioned some 22,000 miles above the ground. In the air, planes will actually be nearer to the orbiting device, rather than farther away, and assuming a line-of-sight link from the road, the truck can work out kinks at a fraction of the cost.


That white dome atop the van, which is similar to the device that'll soon be mounted on JetBlue's fleet, maintains a constant connection by rotating instantly as the van moves -- if the vehicle's heading changes, the antenna array will turn, too, so it's always pointed directly at the sat in the sky. You may have seen ViaSat's van driving down Southern California's freeways, but the rig has just arrived in Orlando, for some additional testing a few degrees away from the company's Carlsbad home. Assuming all goes well here, you'll be shooting around the web courtesy of Fly-Fi in no time at all.

Tags: fly-fi, inflightwifi, jetblue, viasat, viasat-1, visualized

Saturday, December 29, 2012

FCC streamlines rules for aircraft broadband, promotes widespread in-flight WiFi

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The Federal Communications Commission adopted a Report and Order today that updated regulatory requirements needed to provide broadband services on aircraft. In short, the commission has designated Earth Stations Aboard Aircraft -- the broadband modules placed on the exterior of aircraft -- as a licensed application and established a set regulatory process for future providers. What this means is that airlines will be able to select FCC-approved systems, verify that systems don't interfere with aircraft instruments, and obtain FAA approval in about half the time it takes now. The new FCC guidelines should make it easier for smaller airlines to install WiFi on their jets, allowing them to catch up to legacy carriers with nearly fleetwide internet access. This news might also be a mixed blessing for frequent flyers, some of whom see flying as the last bastion of peace in an otherwise connected world.

Continue reading FCC streamlines rules for aircraft broadband, promotes widespread in-flight WiFi

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Source: Federal Communications Commission

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U.S. clears way for wider in-flight Internet deployment

By Jim Wolf

WASHINGTON | Fri Dec 28, 2012 4:01pm EST

WASHINGTON (Reuters) - The U.S. Federal Communications Commission has cleared the way for wider adoption of in-flight Internet services, aiming to cut by as much as 50 percent the time needed for regulatory approval.

Newly adopted rules should boost competition in this part of the U.S. mobile telecommunications market and promote "the widespread availability of Internet access to aircraft passengers," the FCC said in a statement Friday.

Since 2001, the commission has cleared companies on an ad hoc basis to market in-flight broadband services via a satellite antenna fixed to an aircraft's exterior.

Under a newly adopted framework, the licensing procedures will be simpler, the commission said.

Airlines will be able to test systems that meet the commission's standards, establish that they do not interfere with aircraft systems and then get approval of the Federal Aviation Administration, the FCC statement said.

The FAA, a Labor Department arm responsible for operating the nation's air traffic control system, said in response that the FCC's effort to establish standards "will help to streamline the process" for airlines to install Internet hookups on planes.

The goal is to speed the processing of applications by up to 50 percent, FCC Chairman Julius Genachowski said in a separate statement.

The FCC drive to promote broadband aboard planes does not change a ban on the in-flight use of cell phones, which is tied to concerns about interference with ground stations.

Genachowski earlier this month urged the Federal Aviation Administration to allow more electronics on aircraft.

The FAA announced in August that it was forming a government-industry group to study aircraft operators' policies to determine when portable electronic devices may be used safely during flight.

(Reporting By Jim Wolf; Editing by Claudia Parsons)


View the original article here

Saturday, December 22, 2012

Boeing employs sacks of spuds to test new in-flight Wi-Fi tech

Boeing employs sacks of spuds to test new in-flight Wi-Fi techReady for the new Samuel L. Jackson movie?

Plane manufacturer Boeing has turned to unorthodox means to test its new in-flight Wi-Fi systems; replacing humans with potatoes.

The Chicago, Illinois-based behemoth wanted to test the required signal strength and configurations necessary to make reliable Wi-Fi available to around 300 passengers on-board its jets.

Instead of hiring good, old fashioned humans as subjects, the company snapped up 20,000lbs of the carb-filled, chip-makers and dumped them in seats like... well, like a sack of spuds.

According to Boeing, the potatoes reflect and absorb radiowave signals in the same ways as more expensive humans and were the ideal subjects for its latest rounds of tests.

Using humans would have required them to sit motionless in test planes for days on end while the data was gathered, which wouldn't be so bad if there was some decent in-flight movies.

The company said the testing process, made much shorter thanks to the potatoes, will enable it to provide consistent Wi-Fi speeds and signals, while travelling at 35,000ft and 500mph.

Boeing's new methods will offer more reliable connectivity while ensuring that the Wi-Fi signal and device usage does not interfere with the critical systems on the aircraft.

The name for the project? Synthetic Personnel Using Dielectric Substitution. We see what you did there Boeing. Well played.

Via AllThingsD

Tuesday, November 13, 2012

Gogo launches next-gen in-flight internet, with better speeds and more capacity

Gogo Launches Next Generation In-Air Connectivity Technology - ATG-4
New Technology Expected to Significantly Improve Capacity to the Plane

Nov 12, 2012

ITASCA, Ill., Nov. 12, 2012 /PRNewswire/ -- Gogo, a leader of in-flight connectivity and a pioneer in wireless in-flight digital entertainment solutions, announced today that it has launched its next generation connectivity technology – ATG-4 – on three airlines: Delta Air Lines, US Airways and Virgin America. The service is expected to increase capacity to the plane, which will allow more passengers to access the Internet with a more consistent browsing experience.

(Logo: http://photos.prnewswire.com/prnh/20110715/CG34837LOGO)

Currently, Gogo has installed the service on more than 25 domestic aircraft. Virgin America was the first airline to install the new technology and currently plans to roll out the service on more aircraft in the months ahead. In addition to Delta Airlines, US Airways and Virgin America, Gogo is expected to launch ATG-4 service on American Airlines and United's p.s. fleet in 2013.

Gogo's ATG-4 technology is capable of delivering a peak speed of 9.8 Mbps, triple the peak speed of 3.1 Mbps enabled by the previous air-to-ground network. The new technology includes three industry-leading innovations: the addition of directional antennas and dual modems on each aircraft and the deployment of EV-DO Rev. B technology on Gogo's airborne and ground networks.

"This significant step in Gogo's technology roadmap allows us to better address the demand for in-air connectivity services," said Michael Small, Gogo's president and chief executive officer. "We continue to find ways to implement new technologies that bring more bandwidth to the aero market."

Gogo expects to roll out ATG-4 at a rapid pace, with hundreds of aircraft installations planned before the end of 2013. Aircraft installations of the new technology will typically take place overnight and will require the installation of two antennas, one on each side of the aircraft, installation of a second modem and a software upgrade. Gogo's more than 150 land based cellular towers have already been modified for the new technology.

"We know we have a devoted core of customers who depend on our service and who choose flights based on its availability. We are dedicated to providing a consistent, high quality service they can depend on now and in the future," added Small. "ATG-4 planes will have improved that service today – especially on transcontinental routes. At Gogo, we are committed to bringing better communications technology to passengers at 30,000 feet."

About Gogo

Gogo is fast becoming everyone's favorite part of flying. By allowing travelers to get online, in air, Gogo keeps them connected to life. Using the Gogo exclusive network and services, passengers with laptops and other Wi-Fi enabled devices can get online on more than 1,600 commercial aircraft including all domestic mainline Delta Air Lines and nearly all of Delta's regional jets; all AirTran Airways and Virgin America flights; and select Air Canada, Alaska Airlines, American Airlines, Frontier Airlines, United Airlines, and US Airways flights.

Back on the ground, Gogo's 500+ employees in Itasca, IL, Broomfield, CO and London are working to continually redefine flying as a productive, socially connected, and all-around more satisfying experience. Connect with us at www.gogoair.com, on Facebook at www.facebook.com/gogo and on Twitter at www.twitter.com/gogo.


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Engadget tours Gogo's flying test plane, tries its improved ATG-4 in-flight WiFi (hands-on)

Engadget tours Gogo's flying test plane, tries its improved ATG-4 in-flight WiFi (hands-on)

Gogo's test plane isn't your typical jet: it seats just nine passengers, and there's no bathroom; just a closet in the back stacked with networking gear. The company, easily the biggest name in in-flight WiFi, uses the aircraft as a flying lab, where it can test everything from throughput speeds to the log-in experience. It's a small plane that flies out of a small airfield, Aurora Municipal Airport in Illinois, and it's normally just Gogo staffers onboard. Today, the company invited a few reporters aboard to test its newest air-to-ground WiFi service, ATG-4. As you can imagine, newer means faster: ATG-4 is rated for max download speeds of 9.8 Mbps, up from 3.1 Mbps with the last-gen service. It also helps that video streaming services like Netflix, Hulu and HBO Go are now blocked, which should ensure that no one person abuses his WiFi privileges.

As it happens, ATG-4 is already live on approximately 40 planes run by US Airways, Delta and Virgin America. (United has said it plans to introduce the service on select flights in the first half of 2013.) In theory, then, the best way to test ATG-4's performance might be to slip unnoticed onto a commercial flight, and see what it's like to share bandwidth with 20 other people. What's neat about the Gogo test plane, though, is that it can toggle back and forth between ATG and ATG-4, making it easier to compare performance between the two. What's more, though the test plane seats nine, Gogo is able to simulate a crowded flight, with 20 to 30 passengers attempting to use the internet at once. After 90 minutes of flying over Illinois and Missouri, we've got some first-hand impressions and also some pics, if aviation porn is your cup of tea. Read on for more.

With this generation of its air-to-ground service, Gogo made a switch from EVDO Rev A. to Rev. B. By all accounts, it's been an easy enough transition for the airlines: the company says the upgrade can be performed overnight and indeed, Gogo often goes to the airlines' facilities to handle the retrofitting. As you can see below, part of the process involves stepping up to a bigger antenna, which is fixed to the underbelly of the plane. The equipment on the ground is all backward-compatible, which helps minimize the need for an infrastructure overhaul. Consider that when you wonder why there isn't HSPA+ on the back end. (Gogo also says HSPA+ would be an inefficient use of its modest 3MHz of spectrum, but that's another story.)

Engadget tours Gogo's flying test plane, tries its improved ATG4 inflight WiFi handson

Aboard the plane, there's gear for the last-gen ATG service (you'll find that on the upper shelf) along with an ATG-4 configuration sitting below. Fun fact: the company's Itasca, Illinois headquarters contain testing labs that mimic ATG setup you'll find on commercial planes. There's even a room with airplane seats and overhead bins where the company tests the service with focus groups. (We threw in a photo below for giggles. The slide-up windows are a nice touch, though that's more leg room than we're used to.)

Engadget tours Gogo's flying test plane, tries its improved ATG4 inflight WiFi handson

So how's the performance with this new setup? It's not fast, per se, but it's faster. Usable, which is a start. Page loading times dropped noticeably, from 10 to 14 seconds on ATG, to as little as four seconds on ATG-4. File transfers were faster on ATG-4, too, though we'd still advise waiting until you get home to your home WiFi network unless it's really urgent that you share that Facebook album right away. On ATG-4, we were able to upload a 4.1MB photo to SkyDrive in a little over four minutes; that same upload took five minutes and 15 seconds using the last-gen technology. Nota bene: both ATG and ATG-4 compress images, so that alone might be an incentive to hold off on any photo uploads.

At first glance, oddly, this difference in performance doesn't really show up in SpeedTest.net results. Sure, the jump from 0.3 Mbps downloads to 0.81 Mbps rates is something, but our upload speeds held fairly steady, fluctuating slightly between 0.2 Mbps and 0.3 Mbps. We also found that that the ping time dropped by almost half when we moved from ATG to ATG-4 (well over 300ms to 188ms) which suggests latency is much better here. In general, we're willing to take benchmarks like these with a small grain of salt, if only because we have no way of knowing how close we are to the nearest cell site. Still, as we said, real-world performance improved noticeably when we switched to the newer technology.

Average SpeedTest results (downloads / uploads)10 to 14 seconds (depending on load)4 to 8 seconds (depending on load)Uploading a 4.1MB file to SkyDrive

And yet, much of this improvement doesn't have so much to do with speed but rather, sheer usability. As we said, ATG was fine -- but that's when we there were only nine people on the plane. In that scenario, page loads sometimes took more than 10 seconds, but they loaded. Saving work in Engadget's CMS took three seconds -- again, a little sluggish, but it's better than nothing. Once the Gogo crew simulated a crowded plane, though, we couldn't even load the Chrome browser settings page. On ATG-4, performance still takes a dip, but at least your workflow won't get interrupted. Even with that simulated load, we were able to load web sites in about eight seconds, which is still faster than on last-gen ATG in the best conditions. Fortunately, Gogo says only seven people sign on during the average flight, though ATG-4 can support up to 65 people. That might be the biggest takeaway here: WiFi on planes still isn't very fast. It's just more reliable now.


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