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Advanced coding and modulation schemes for TDRSSThis paper describes the performance of the Ungerboeck and pragmatic 8-Phase Shift Key (PSK) Trellis Code Modulation (TCM) coding techniques with and without a (255,223) Reed-Solomon outer code as they are used for Tracking Data and Relay Satellite System (TDRSS) S-Band and Ku-Band return services. The performance of these codes at high data rates is compared to uncoded Quadrature PSK (QPSK) and rate 1/2 convolutionally coded QPSK in the presence of Radio Frequency Interference (RFI), self-interference, and hardware distortions. This paper shows that the outer Reed-Solomon code is necessary to achieve a 10(exp -5) Bit Error Rate (BER) with an acceptable level of degradation in the presence of RFI. This paper also shows that the TCM codes with or without the Reed-Solomon outer code do not perform well in the presence of self-interference. In fact, the uncoded QPSK signal performs better than the TCM coded signal in the self-interference situation considered in this analysis. Finally, this paper shows that the E(sub b)/N(sub 0) degradation due to TDRSS hardware distortions is approximately 1.3 dB with a TCM coded signal or a rate 1/2 convolutionally coded QPSK signal and is 3.2 dB with an uncoded QPSK signal.
Document ID
19940016877
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Harrell, Linda
(Stanford Telecommunications, Inc. Seabrook, MD, United States)
Kaplan, Ted
(Stanford Telecommunications, Inc. Seabrook, MD, United States)
Berman, Ted
(Stanford Telecommunications, Inc. Seabrook, MD, United States)
Chang, Susan
(Stanford Telecommunications, Inc. Seabrook, MD, United States)
Date Acquired
September 6, 2013
Publication Date
November 1, 1993
Publication Information
Publication: NASA. Goddard Space Flight Center, Networks Technology Conference
Subject Category
Communications And Radar
Accession Number
94N21350
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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