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Near-optimum decoding of product codes: block turbo codes

机译:产品代码的近乎最佳解码:块turbo代码

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摘要

This paper describes an iterative decoding algorithm for any product code built using linear block codes. It is based on soft-input/soft-output decoders for decoding the component codes so that near-optimum performance is obtained at each iteration. This soft-input/soft-output decoder is a Chase decoder which delivers soft outputs instead of binary decisions. The soft output of the decoder is an estimation of the log-likelihood ratio (LLR) of the binary decisions given by the Chase decoder. The theoretical justifications of this algorithm are developed and the method used for computing the soft output is fully described. The iterative decoding of product codes is also known as the block turbo code (BTC) because the concept is quite similar to turbo codes based on iterative decoding of concatenated recursive convolutional codes. The performance of different Bose-Chaudhuri-Hocquenghem (BCH)-BTCs are given for the Gaussian and the Rayleigh channel. Performance on the Gaussian channel indicates that data transmission at 0.8 dB of Shannon's limit or more than 98% (R/C<0.98) of channel capacity can be achieved with high-code-rate BTC using only four iterations. For the Rayleigh channel, the slope of the bit-error rate (BER) curve is as steep as for the Gaussian channel without using channel state information.
机译:本文描述了使用线性分组码构建的任何乘积码的迭代解码算法。它基于软输入/软输出解码器对组件代码进行解码,以便在每次迭代时获得接近最佳的性能。该软输入/软输出解码器是Chase解码器,可提供软输出而不是二进制决策。解码器的软输出是对大通解码器给出的二进制判决的对数似然比(LLR)的估计。提出了该算法的理论依据,并全面描述了计算软输出的方法。乘积码的迭代解码也称为块Turbo码(BTC),因为该概念与基于串联递归卷积码的迭代解码的Turbo码非常相似。针对高斯和瑞利信道,给出了不同的Bose-Chaudhuri-Hocquenghem(BCH)-BTC的性能。高斯信道上的性能表明,仅使用四次迭代就可以使用高码率BTC来实现香农极限0.8 dB或信道容量超过98%(R / C <0.98)的数据传输。对于瑞利信道,不使用信道状态信息,误码率(BER)曲线的斜率与高斯信道一样陡。

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