A wideband satcom based avionics network with CDMA uplink and TDM downlink
Author(s) -
Dakshi Agrawal,
Bartley C. Johnson,
Upamanyu Madhow,
Kannan Ramchandran,
K. S. Chun
Publication year - 2000
Publication title -
18th international communications satellite systems conference and exhibit
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2000-1212
Subject(s) - telecommunications link , computer science , computer network , time division multiplexing , multiplexing , code division multiple access , avionics , communications satellite , physical layer , electronic engineering , real time computing , satellite , telecommunications , engineering , wireless , aerospace engineering
The purpose of this paper is to describe some key technical ideas behind our vision of a future satcom based digital communication network for avionics applications The key features of our design are as follows: (a) Packetized transmission to permit efficient use of system resources for multimedia traffic; (b) A time division multiplexed (TDM) satellite downlink whose physical layer is designed to operate the satellite link at maximum power efficiency. We show how powerful turbo codes (invented originally for linear modulation) can be used with nonlinear constant envelope modulation, thus permitting the satellite amplifier to operate in a power efficient nonlinear regime; (c) A code division multiple access (CDMA) satellite uplink, which permits efficient access to the satellite from multiple asynchronous users. Closed loop power control is difficult for bursty packetized traffic, especially given the large round trip delay to the satellite. We show how adaptive interference suppression techniques can be used to deal with the ensuing near-far problem; (d) Joint source-channel coding techniques are required both at the physical and the data transport layer to optimize the end-to-end performance. We describe a novel approach to multiple description image encoding at the data transport layer in this paper.
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