Title :
A concatenated coded modulation scheme for error control
Author :
Kasami, Tadao ; Takata, Toyoo ; Fujiwara, Toru ; Lin, Shu
Author_Institution :
Fac. of Eng. Sci., Osaka Univ., Japan
fDate :
6/1/1990 12:00:00 AM
Abstract :
A concatenated coded modulation scheme is presented for error control in data communications. The scheme is achieved by concatenating a Reed-Solomon outer code and a bandwidth efficient block inner code for M-ary phase-shift keying (PSK) modulation. Error performance of the scheme is analyzed for an additive white Gaussian noise (AWGN) channel. It is shown that extremely high reliability can be attained by using a simple M-ary PSK modulation inner-code and a relatively powerful Reed-Solomon outer code. Furthermore, if an inner code of high effective rate is used, the bandwidth expansion required by the scheme due to coding will be greatly reduced. The scheme is particularly effective for high-speed satellite communications for large file transfer where high reliability is required. A simple method is also presented for constructing block codes for M-ary PSK modulation. Soome short M-ary PSK codes with good minimum squared Euclidean distance are constructed. These codes have trellis structure and hence can be decoded with a soft-decision Viterbi decoding algorithm. Furthermore, some of these codes are phase invariant under multiples of 45° rotation
Keywords :
data communication systems; encoding; error correction codes; phase shift keying; AWGN channel; M-ary PSK modulation; M-ary phase-shift keying; Reed-Solomon outer code; additive white Gaussian noise; bandwidth efficient block inner code; concatenated coded modulation scheme; data communications; error control; high-speed satellite communications; large file transfer; minimum squared Euclidean distance; phase invariant codes; soft-decision Viterbi decoding algorithm; trellis structure; AWGN; Bandwidth; Concatenated codes; Data communication; Decoding; Error correction; Modulation coding; Phase modulation; Phase shift keying; Reed-Solomon codes;
Journal_Title :
Communications, IEEE Transactions on