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首页> 外文期刊>IEICE Transactions on Communications >Sub-Block Recovery Scheme for Iterative Decoding of Turbo Codes with the Sub-Block Structure
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Sub-Block Recovery Scheme for Iterative Decoding of Turbo Codes with the Sub-Block Structure

机译:具有子块结构的Turbo码迭代解码的子块恢复方案

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摘要

Wireless communication systems usually employ a concatenated error control coding scheme consisting of an outer error detection code and an inner error correction code. Traditionally, these two codes are decoded separately. When the sub-block structure is used, each data block (input sequence) at the inner encoder consists of several sub-blocks and each of these sub-blocks is protected with the error detection code. The sub-block structure is used in the Wideband CDMA (WCDMA) system specified by the 3rd Generation Partnership Project (3GPP). In this paper, a sub-block recovery scheme is proposed for this concatenated error control coding scheme to utilize the error detection capability introduced by the outer code in the decoding of the inner code. We demonstrate that, if the inner code is a turbo code with a highly structured interleaver and iterative sub-optimal decoding is used, the sub-block recovery scheme is helpful in correcting a typical error pattern, which helps to improve the block error rate performance. We analyze the decoding performance when sub-block recovery is used together with the maximum likelihood (ML) algorithm as well as the log maximum-a-posteriori probability (Log-MAP) and the soft output Viterbi algorithm (SOVA) and demonstrate gains introduced by the sub-block recovery in the latter two cases using computer simulations.
机译:无线通信系统通常采用由外部检错码和内部纠错码组成的级联错误控制编码方案。传统上,这两个代码是分别解码的。当使用子块结构时,内部编码器上的每个数据块(输入序列)由几个子块组成,并且这些子块中的每一个都由检错码保护。子块结构用于第三代合作伙伴计划(3GPP)指定的宽带CDMA(WCDMA)系统。在本文中,针对这种级联的错误控制编码方案,提出了一种子块恢复方案,以利用内部码的解码中由外部码引入的检错能力。我们证明,如果内部代码是具有高度结构化交织器的turbo代码,并且使用了迭代次优解码,则子块恢复方案有助于纠正典型的错误模式,从而有助于提高块错误率性能。我们分析了将子块恢复与最大似然(ML)算法以及对数最大后验概率(Log-MAP)和软输出维特比算法(SOVA)一起使用时的解码性能,并演示了引入的增益在后两种情况下,使用计算机模拟进行子块恢复。

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