Boeing Says Test 'Breakthrough' Means More Reliable Connectivity On Airplanes | Aero-News Network
Aero-News Network
RSS icon RSS feed
podcast icon MP3 podcast
Subscribe Aero-News e-mail Newsletter Subscribe

Airborne Unlimited -- Most Recent Daily Episodes

Episode Date

Airborne-Monday

Airborne-Tuesday

Airborne-Wednesday Airborne-Thursday

Airborne-Friday

Airborne On YouTube

Airborne-Unlimited-04.29.24

Airborne-Unlimited-04.23.24

Airborne-Unlimited-04.24.24 Airborne-FltTraining-04.25.24

Airborne-Unlimited-04.26.24

Thu, Dec 20, 2012

Boeing Says Test 'Breakthrough' Means More Reliable Connectivity On Airplanes

Potato Test Yields More Comprehensive Evaluation For Safety Standards, Clears Way For Better In-Cabin Signals

An advanced method to test wireless signals in airplane cabins has been developed by Boeing, making it possible for passengers to enjoy more reliable connectivity when using networked personal electronic devices in the air. Boeing engineers created a new process for measuring radio signal quality using proprietary measurement technology and analysis tools. This enables engineers to more efficiently measure how strong a signal is and how far it spreads, ensuring safe yet powerful signal penetration throughout an airplane cabin.

Once the new method was established, testing that previously took more than two weeks to conduct was reduced to 10 hours. "Every day we work to ensure that Boeing passengers are travelling on the safest and most advanced airplanes in the world," said Dennis O'Donoghue, vice president of Boeing Test & Evaluation. "This is a perfect example of how our innovations in safety can make the entire flying experience better."

This technology was first developed to more thoroughly and efficiently ensure that signal propagation met the regulatory safety standards that protect against interference with an aircraft's critical electrical systems.

Initially using a de-commissioned airplane, the team from Boeing Test & Evaluation laboratories conducted a series of such tests. The team determined that potatoes were ideal stand-ins for passengers, given their similar physical interactions with electronic signal properties. Much of the testing was conducted on the grounded airplane with the seats filled with 20,000 pounds of potato sacks. The test data was then validated on the ground with human stand-ins for passengers.

A wireless signal inside an airplane can deviate randomly when people move around. Boeing's new test process takes advantage of state-of-the-art technology and ground-breaking statistical analysis to identify strong and weak signal areas and balance them by adjusting the connectivity system accordingly. The result, Boeing says, is increased safety and reliability.

FMI: www.boeing.com

 


Advertisement

More News

ANN's Daily Aero-Term (04.30.24): Runway Centerline Lighting

Runway Centerline Lighting Flush centerline lights spaced at 50-foot intervals beginning 75 feet from the landing threshold and extending to within 75 feet of the opposite end of t>[...]

ANN's Daily Aero-Linx (04.30.24)

Aero Linx: Air Force Global Strike Command Air Force Global Strike Command, activated August 7, 2009, is a major command with headquarters at Barksdale Air Force Base, Louisiana, i>[...]

Airborne 04.24.24: INTEGRAL E, Elixir USA, M700 RVSM

Also: Viasat-uAvionix, UL94 Fuel Investigation, AF Materiel Command, NTSB Safety Alert Norges Luftsportforbund chose Aura Aero's little 2-seater in electric trim for their next gli>[...]

Airborne 04.29.24: EAA B-25 Rides, Textron 2024, G700 Deliveries

Also: USCG Retires MH-65 Dolphins, Irish Aviation Authority, NATCA Warns FAA, Diamond DA42 AD This summer, history enthusiasts will have a unique opportunity to experience World Wa>[...]

Airborne-NextGen 04.23.24: UAVOS UVH 170, magni650 Engine, World eVTOL Directory

Also: Moya Delivery Drone, USMC Drone Pilot, Inversion RAY Reentry Vehicle, RapidFlight UAVOS has recently achieved a significant milestone in public safety and emergency services >[...]

blog comments powered by Disqus



Advertisement

Advertisement

Podcasts

Advertisement

© 2007 - 2024 Web Development & Design by Pauli Systems, LC