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Serial concatenations of interleaved codes: performance analysis, design and iterative decoding

机译:交错代码的串行串联:性能分析,设计和迭代解码

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摘要

A serially concatenated code with interleaver consists of the cascade of an outer encoder, an interleaver permuting the outer codewords bits, and an inner encoder whose input words are the permuted outer codewords. The construction can be generalized to h cascaded encoders separated by h-1 interleavers. We obtain upper bounds to the average maximum-likelihood bit error probability of serially concatenated block and convolutional coding schemes. Then, we derive design guidelines for the outer and inner encoders that maximize the interleaver gain and the asymptotic slope of the error probability curves. Finally, we propose a new, low-complexity iterative decoding algorithm. Throughout the paper, extensive comparisons with parallel concatenated convolutional codes known as "turbo codes" are performed, showing that the new scheme can offer superior performance.
机译:具有交织器的串行级联代码包括一个外部编码器,一个对外部编码字位进行置换的交织器以及一个内部编码器,其输入字为经置换的外部编码字。该构造可以推广到由h-1个交织器分隔的h个级联编码器。我们获得了串行级联块和卷积编码方案的平均最大似然误码率的上限。然后,我们推导出用于外部和内部编码器的设计准则,以使交织器增益和误差概率曲线的渐近斜率最大化。最后,我们提出了一种新的,低复杂度的迭代解码算法。在整个论文中,与称为“ turbo码”的并行级联卷积码进行了广泛的比较,表明新方案可以提供出色的性能。

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