DocumentCode
2509178
Title
Designing adaptive architectures for transoceanic in flight communications
Author
Slywczak, Richard ; Mezu, Okechukwu ; Green, Biyan
Author_Institution
NASA Glenn Res. Center, Cleveland, OH, USA
Volume
2
fYear
2004
fDate
24-28 Oct. 2004
Abstract
During commercial flights, pilots require continuous communications and seamless access to data products, such as graphical weather maps and turbulence alerts, to proactively react to dynamic flight conditions. NASA/Glenn Research Center (GRC) and the weather information communications (WINCOMM) project have been researching methods to improve communications and to disseminate graphical weather data products to aircraft flying in the transoceanic region where en route weather collection and dissemination are minimal. The goal is to employ commercial satellite-based communications and packet switching technologies to provide a cost effective and efficient communications solution for aviation. This paper describes the goals of the WINCOMM program and the research related to the transoceanic scenario. It describes the flight architecture and the proposed communication network that is currently being implemented in the laboratory. The main goal is to have a seamless but efficient separation of services between the cockpit and cabin data with both data existing on the same data link. The initial findings for the quality of service (QoS) research is presented along with the techniques for implementing QoS in Cisco routers and the design of the QoS schemes for the transoceanic testbed. Data for the testing initially focus on sending informational and graphical weather data but eventually encompass warning/cockpit alerts and, hopefully, air traffic control messages. In mid-2005, the laboratory setting can be flight tested aboard the Langley Research Center´s (LaRC) Boeing-757.
Keywords
air traffic control; aircraft; aircraft communication; aircraft computers; packet switching; quality of service; satellite communication; switching networks; Boeing-757; Cisco routers; Glenn Research Center; Langley Research Center; NASA Research Center; QoS; adaptive architectures design; air traffic control messages; aircraft flying; cockpit alerts; communication network; dynamic flight conditions; encompass warning; flight architecture; flight communications; graphical weather data products; graphical weather maps; informational weather data; packet switching technologies; quality of service; satellite based communications; transoceanic region; transoceanic testbed; weather information communications; Aircraft; Bandwidth; Communication switching; Costs; Laboratories; Packet switching; Quality of service; Switches; Switching circuits; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Digital Avionics Systems Conference, 2004. DASC 04. The 23rd
Print_ISBN
0-7803-8539-X
Type
conf
DOI
10.1109/DASC.2004.1390820
Filename
1390820
Link To Document