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Coded throughput performance simulations for the time-varying satellite channelThe design of a reliable satellite communication link involving the data transfer from a small, low-orbit satellite to a ground station, but through a geostationary satellite, was examined. In such a scenario, the received signal power to noise density ratio increases as the transmitting low-orbit satellite comes into view, and then decreases as it then departs, resulting in a short-duration, time-varying communication link. The optimal values of the small satellite antenna beamwidth, signaling rate, modulation scheme and the theoretical link throughput (in bits per day) have been determined. The goal of this thesis is to choose a practical coding scheme which maximizes the daily link throughput while satisfying a prescribed probability of error requirement. We examine the throughput of both fixed rate and variable rate concatenated forward error correction (FEC) coding schemes for the additive white Gaussian noise (AWGN) channel, and then examine the effect of radio frequency interference (RFI) on the best coding scheme among them. Interleaving is used to mitigate degradation due to RFI. It was found that the variable rate concatenated coding scheme could achieve 74 percent of the theoretical throughput, equivalent to 1.11 Gbits/day based on the cutoff rate R(sub 0). For comparison, 87 percent is achievable for AWGN-only case.
Document ID
19960008585
Acquisition Source
Legacy CDMS
Document Type
Thesis/Dissertation
Authors
Han, LI
(New Mexico State Univ. Las Cruces, NM, United States)
Date Acquired
September 6, 2013
Publication Date
December 1, 1995
Subject Category
Communications And Radar
Report/Patent Number
NASA-CR-199790
NIPS-95-06460
NAS 1.26:199790
NMSU-ECE-95-010
Accession Number
96N15751
Funding Number(s)
CONTRACT_GRANT: NAG5-1491
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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