DocumentCode :
3518258
Title :
Coding for fast frequency hopped noncoherent MFSK spread spectrum communications under worst case jamming
Author :
Wang, Q. ; Gulliver, T.A. ; Bhargava, V.K. ; Felstead, E.B.
Author_Institution :
Dept. of Electr. & Comput. Eng., Victoria Univ., BC, Canada
fYear :
1988
fDate :
23-26 Oct. 1988
Firstpage :
299
Abstract :
The authors examine the performance of various types of error correcting codes under worst-case partial band noise jamming and worst-case multitone jamming using fast frequency-hopped, noncoherent M-ary frequency-shift-keying (NCMFSK) with optimum diversity. The bit-error-rate performance of some error correcting codes, which augments the results previously published on the subject, is given. New candidate codes with superior antijam performance are identified. It is concluded that, overall, the concatenated (255,241) Reed-Solomon outer code with the semiorthogonal convolutional inner code with 8-ary FSK has the best performance. If only nonconcatenated codes are considered, the rate 1/2 Trumpis code is best, and is only 0.89 dB worse than the best concatenated code.<>
Keywords :
encoding; error correction codes; frequency agility; frequency shift keying; jamming; spread spectrum communication; 8-ary FSK; NCMFSK; antijam performance; bit-error-rate performance; candidate codes; coding; concatenated Reed-Solomon outer code; error correcting codes; fast frequency hopped noncoherent MFSK spread spectrum communications; multitone jamming; optimum diversity; rate 1/2 Trumpis code; semiorthogonal convolutional inner code; worst case jamming; Background noise; Bit error rate; Computer aided software engineering; Computer errors; Error correction codes; Frequency diversity; Jamming; Protection; Satellites; Spread spectrum communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Military Communications Conference, 1988. MILCOM 88, Conference record. 21st Century Military Communications - What's Possible? 1988 IEEE
Conference_Location :
San Diego, CA, USA
Type :
conf
DOI :
10.1109/MILCOM.1988.13408
Filename :
13408
Link To Document :
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