Title :
Diversity combining and Reed-Solomon coding for fast frequency hopped noncoherent MFSK
Author_Institution :
Defence Res. Establ. Ottawa, Ont., Canada
fDate :
30 Sep-3 Oct 1990
Abstract :
A robust concatenated coding scheme to provide protection against intelligent jamming is presented. The concatenated code uses a simple repetition (diversity) inner code and an outer Reed-Solomon (RS) error-correcting code. Two powerful diversity combining methods, normalized envelope detection (NED) and the second-and-first moment (2-1 M) method, are considered. The signaling is fast frequency hopped noncoherent M-ary frequency shift keying (FSK), which provides an inherent diversity. Ratio statistics from the combining operation are used to provide quality information on the received FSK symbols for erasure-correction RS decoding. A successive error-erasure decoding algorithm using this information is found to produce a bit error rate (BER) less than that using error-correction decoding alone. The improvement over diversity combining alone is significant when the RS decoder input BER is less than 10-2
Keywords :
diversity reception; encoding; error correction codes; frequency agility; frequency shift keying; interference suppression; jamming; BER; Reed-Solomon coding; bit error rate; diversity combining methods; erasure-correction RS decoding; error-erasure decoding algorithm; fast frequency hopped noncoherent M-ary frequency shift keying; fast frequency hopped noncoherent MFSK; intelligent jamming; normalized envelope detection; outer Reed-Solomon error-correcting code; robust concatenated coding scheme; second-and-first moment method; Bit error rate; Concatenated codes; Decoding; Diversity reception; Frequency diversity; Frequency shift keying; Jamming; Protection; Reed-Solomon codes; Robustness;
Conference_Titel :
Military Communications Conference, 1990. MILCOM '90, Conference Record, A New Era. 1990 IEEE
Conference_Location :
Monterey, CA
DOI :
10.1109/MILCOM.1990.117394