Showing posts with label Technology. Show all posts
Showing posts with label Technology. Show all posts

Wednesday, 21 May 2014

Delta regains technology systems from Travelport

Delta Air Lines Inc. will buy back from Travelport the data and intellectual property rights central to its passenger service and flight operations systems.
Financial terms were not disclosed.
With the deal, Atlanta-based Delta (NYSE: DAL) will be the only U.S. airline to directly control certain technology systems. The agreement includes:
  • Transfer of direct control and operations for Delta’s passenger service systems and flight operations systems.
  • A transition of the development software that does not require a technology migration event so there is no effect to Delta customers.
  • Transition of more than 175 technology professionals to Delta on July 1.
Travelport will continue to run the system infrastructure for the Delta platform in its Atlanta data center.
“These systems are the data and operational backbone for more than 180 technology applications used to run our airline every day,” said Delta CEO Richard Anderson, in a statement. “By bringing the systems along with the highly skilled people who support them under Delta’s direct management, we gain greater flexibility and control over the technology enhancements that will continue to improve our operational performance and passenger experience.”

Sunday, 11 May 2014

easyJet in technology focus

easyJet will be applying new and innovative technologies to help operate its fleet of 220 Airbus A319 and A320 aircraft even more efficiently and reduce delays while maintaining its industry leading punctuality and safety records.

Commenting on these advances, chief executive of easyJet, Carolyn McCall, said: “We have examined and assessed cutting edge technology across many different industries and are now applying a range of new technologies to the aviation sector for the first time to help us run our fleet of aircraft more effectively, efficiently and safely.”

“The advantage of these emerging technologies is threefold - freeing up our engineering team to undertake more skilled tasks, keeping our costs down which in turn keeps our fares low and helping to minimise delays so maintaining our industry leading punctuality for our passengers.

“Safety is our number one priority and so all of these new technologies will be applied by our experienced engineering and flight crew to ensure our leading safety record is maintained.”

DRONE AND ROBOTIC TECHNOLOGY
The airline today announced it is working with Coptercraft, Measurement Solutions and Bristol Robotics Laboratory to modify existing technology so that drones can be employed to inspect its fleet of Airbus aircraft. The drones will be programmed to scan and assess the planes reporting back to engineers on any damage which may require further inspection or maintenance work. The drones are currently in development with a view to trialling them in the coming months and introducing them into operation as early as next year.

Ian Davies, Head of Engineering for easyJet, commented; “Drone technology could be used extremely effectively to help us perform aircraft checks. Checks that would usually take more than a day could be performed in a couple of hours and potentially with greater accuracy.”

Dr Arthur Richards, Head of Aerial Robotics at the Bristol Robotics Laboratory, a partnership between the University of Bristol and the University of West England, commented:
“Aircraft inspection is a great application for drones. Coupled with smart navigation and computer vision, they can get accurate data from really awkward places.

“We look forward to working with easyJet to develop safe, effective and efficient drone systems for this challenge.”

3D AUGMENTED REALITY TECHNOLOGY
Alongside the drone technology, easyJet is looking at deploying 3D Virtual Reality and Augmented Reality technology by Epson and Vuzix which enables a remote engineering team to see exactly what a pilot or engineer is seeing using virtual reality glasses.

The glasses use the world’s first high definition see through display system, providing augmented reality helping easyJet to remotely diagnose a technical issue.

This technology will be especially useful in some of the airline’s more remote airports across its network - the airline currently flies to 138 airports with some as far away as Sharm el Sheikh and Tel Aviv.

Currently engineers and pilots have to email pictures and call easyJet’s Operations Control Centre to try and resolve the issue over the phone. easyJet is also currently trialling similar video technology from Vidcie and XO Eye that allows live streaming between the engineer on the ramp and easyJet’s OCC.

OCC will also be able to provide live information to the engineers and pilots in real time, along with technical assistance through an integrated handsfree head set.

Ian Davies continued: “3D augmented reality technology is key to easyJet reducing longer delays when an aircraft is down route. This will help us get greater clarity on any technical issues which occur hundreds of miles away. By wearing the augmented reality glasses, pilots or engineers down route can transmit live pictures and data to the

easyJet Operations Control Centre at Luton giving them direct access to visual information making it easier for them to resolve any technical issue.”

APPS
easyJet’s engineering department has also worked with Output42 to develop their own bespoke apps which will allow our engineers to perform certain day-to-day issues more efficiently and enable easyJet to return aircraft to service more quickly. For example, one app helps engineers identify and replace damaged fan blades (for example, after a bird strike) more quickly by scanning fan blades and automatically ordering a suitable replacement blade from the airline’s inventory.

The apps are in different stages of development and we expect to be trialling a range of them over the course of the summer.

PAPERLESS AIRCRAFT
easyJet will complete the fitting of Panasonic Toughpads, in place of laptops and printed navigational charts, in all of its cockpits by the end of this month. This means that the airline is already nearing a completely paperless plane. These tablets will also make easyJet one of the first airlines to use this type of device in all phases of flight and on the ground. By replacing heavy printed log books easyJet expects to reduce fuel costs by around $500,000 each year. Every kilo of weight taken off easyJet’s fleet of aircraft saves around $20,000 per year.

In addition, new ‘e-paper’ technology created by Sony, could see easyJet completely eradicate printed forms in the cabin; this would mean an entirely paperless plane. This new Digital Paper is the latest lightweight design from Sony which makes it feel like the user is writing on paper. Completed forms can be quickly saved into a central database enabling the airline’s operational team quick and easy access to information on all of the aircraft. Trials will start in the coming months.

INFLIGHT MONITORING AND PROGNOSIS
easyJet is working with FlightWatching to install a state-of-the-art early fault prognosis tool which can provide the airline’s operations and engineering staff with live updates directly from all of its aircraft as they fly.
The system is an innovative web-based software system from FlightWatching called WILCO which can receive real time values of aircraft system parameters via the ACARS messaging system. This data is then transformed into an animated schematic that can be used to predict any potential issues or to troubleshoot known technical faults before the plane lands. This means the prognostic tool will enable the ground-based engineers to start investigation mid-flight and ensure that the correct engineering resource or parts are available for when the flight lands, thus increasing efficiency.

EASYJET’S FLEET – BACKGROUND INFORMATION
easyJet operates its fleet of aircraft in strict compliance with all manufacturers’ regulations, often exceeding them. The airline employs a highly skilled workforce of 237 engineering staff as well as outsourcing to external suppliers in many bases across its network.

easyJet’s engineering department has a track record in innovation, last year working alongside Airbus and Nicarnica Aviation to prove its ash detection technology which is expected to be fitted onto an easyJet aircraft within the coming months.

easyJet recently placed an order to acquire 35 Current Generation A320 Aircraft for delivery between 2015 and 2017 under its existing agreement and 100 New Generation A320neo Aircraft for delivery from 2017 until 2022.

Monday, 14 April 2014

Faster Wi-Fi On Flights Leads To Battle In The Sky

The number of commercial planes worldwide with Wi-Fi, cell service or both is expected to more than triple over the next 10 years, to 14,000 from about 4,000 currently. Wi-Fi in the sky is taking off, promising much better connections for travelers and a bonanza for the companies that sell the systems.

With satellite-based Wi-Fi, internet speeds on jetliners are getting lightning fast. And airlines are finding that travellers expect connections in the air to rival those on the ground – and at lower cost. But the fast evolution of rival systems and standards, such as Ku band and Ka band, pose a big question for airlines: which one to choose?

Equipping fleets can cost hundreds of millions of dollars, and airlines don’t want to see their investment quickly become outdated due to newer technology. That’s made some cautious about signing up.

“We don’t want to end up with a Betamax,” said Peter Ingram, chief financial officer of Hawaiian Airlines, referring to the Sony video format that eventually lost out to the VHS standard, leaving many consumers with obsolete systems.

Hawaiian is still considering which system to use. The drive for in-flight connectivity also has intensified after the disappearance on March 8 of Malaysia Airlines Flight 370 with 239 people aboard. Search teams are scouring parts of the Indian Ocean for the missing aircraft, and it might have been better tracked if a satellite system capable of streaming cockpit data had been on board.

GLOBAL MARKET

The U.S. market for airborne internet got a big boost last November after the U.S. Federal Aviation Administration allowed passengers to use smartphones, tablets and e-readers throughout a flight, ending a long-standing ban on their use during takeoff and landing.

While the change hasn’t been adopted worldwide, the FAA’s move is expected to lead to greater use of devices, and bandwidth, on planes. About 40 per cent of U.S. jetliners already have some Wi-Fi, but the race is on to wire the rest of a growing global fleet, and to make the existing connections better.

The number of commercial planes worldwide with Wi-Fi, cell service or both is expected to more than triple over the next 10 years, to 14,000 from about 4,000 currently, with much of that growth in Asia, according to research firm IHS.

Even with a tripling, only half of the worldwide fleet will be wired in 2022, suggesting demand for new systems will last longer. Much of the U.S. fleet will need upgrades to access satellites, since many planes currently are equipped for ground-based transmission, which is typically slower than satellite.

“Passengers of the future want to be connected when they want,” Chris Emerson, senior vice president of marketing at Airbus, told Reuters during the Aircraft Interiors Expo in Hamburg.

“Everyone wants internet the way they have it on the ground, so it has to be cheap or free.”

GREATER SPEED

Satellite technology will speed up onboard connections sevenfold, to about 70 megabits per second next year, fast enough to download a two-hour high-definition movie in about four minutes. Of course, that bandwidth will be shared among all of the users on the flight, which could number 200 or more.

Satellites also will allow service to reach developing markets in Asia and Latin America, and to offer expanded service in the U.S. and European markets. Investors expect the global expansion and faster speeds will fuel greater use of services, with revenue split between the providers and the airlines.

It also will drive hardware sales, as airlines outfit aircraft with antennas, radios and routers. Honeywell, for example, makes fuselage-top antennas that link to the Global Xpress network provided by Inmarsat PLC, which operates on the Ka band.

In demonstrating the GX system at the Hamburg show, Honeywell said the system can deliver up to 50 megabits per second consistently around most of the globe, and it plans to test it on its own plane this summer, while Air China is expected to start trials with it in late 2014 or early 2015.

“GX is going to be a real game changer for airlines and their passengers from 2015 when the service comes online,” John Broughton, director of product marketing for GX at Honeywell, said in an interview.

A rival standard, Ku band, operates in a lower frequency band. While it may be able to achieve higher bandwidth than Ka band in certain areas, its overall connectivity is not as consistent, especially on long-haul flights over oceans, experts said.

Gogo used the Hamburg show to announce its 2Ku system, that will use a special dual antenna made by ThinKom Solutions Inc to raise the capacity of the Ku band system to 70 mbps, a leap from its current systems that operated at 3 to 10 mbps. Gogo also offers Ka band satellite connectivity and built its business on ground-based cell-tower technology in the United States.

“BETAMAX” RISK

The improving systems mean customers will demand better connections. Some frequent fliers with status on several airlines say they choose flights based on Wi-Fi availability.

“It becomes an ante at the table,” said Jonathan Schildkraut, an analyst at Evercore Partners, which co-managed Gogo’s IPO last June.

But the variety of systems poses tough decisions for airlines, which risk choosing a technology that could become outdated.

Ingram, the CFO of Hawaiian Airlines, said the choice and cost of a system is especially important for his fleet since it mostly carries people on vacation – people who don’t want to be tethered to the office.

“The technology in the Wi-Fi space for trans-Pacific flying is still evolving,” he said, “so we haven’t made any final decisions yet.”

German airline Deutsche Lufthansa AG knows the perils. It originally worked with Connexion, a Boeing unit developing in-flight Wi-Fi that operated a decade ago but failed to attract enough customers.

“We were a little bit unfortunate,” CEO Christoph Franz said in an interview. “We had spent millions to equip our aircraft.”

Lufthansa has since outfitted more than 90 per cent of its long-haul planes with satellite connectivity.

But it is taking a step-by-step approach for other planes, outfitting about 30 Airbus A321 aircraft with a system that can stream content from an onboard server to handheld devices, but doesn’t connect to the internet.

“We need a decent provider for that, but we didn’t want our customers to wait,” Franz said. He expects a “triple-digit-million” euro investment to outfit the full fleet.

“We are ready to do this,” he said. “But we have to look at the bill. We will see which system at the end of the day turns out to be the most affordable and the fastest.”