Concatenated forward error correction is studied using an outer KP4 Reed-Solomon code with hard-decision decoding and inner single parity check (SPC) codes with Chase/Wagner soft-decision decoding. Analytical expressions are derived for the end-to-end frame and bit error rates for transmission over additive white Gaussian noise channels with binary phase-shift keying (BPSK) and quaternary amplitude shift keying (4-ASK), as well as with symbol interleavers and quantized channel outputs. The BPSK error rates are compared to those of two other inner codes: a two-dimensional product code with SPC component codes and an extended Hamming code. Simulation results for unit-memory inter-symbol interference channels and 4-ASK are also presented. The results show that the coding schemes achieve similar error rates, but SPC codes have the lowest complexity and permit flexible rate adaptation.
翻译:本文研究了利用KP4里德-所罗门码和硬判决解码及内部具有Chase/Wagner软判决解码单次校验(SPC)纠错码的拼接前向纠错技术。本文推导了在加性白高斯噪声通道中,使用二进制相移键控(BPSK)和四进制振幅调制键控(4-ASK)以及符号交织器和量化信道输出进行的端到端帧和比特错误率的分析表达式。比较了BPSK误码率与其他两种内部码的误码率:具有SPC分量码的二维乘积码和扩展海明码。还提供了针对单位内存间符号干扰通道和4-ASK的仿真结果。结果表明这些编码方案达到了类似的误码率,但SPC码具有最低的复杂度,并允许灵活的速率自适应。