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A Trellis Error Modeling Approach to Decoding Distributed Turbo Codes

机译:网格误差建模方法用于解码分布式Turbo码

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In this paper, we re-examine the decoding problem of a distributed turbo code (DTC) over the three-node one-way relay channel based on the decode-and-forward protocol. In the traditional DTC scheme, the decoder at the destination assumes the error-free Viterbi decoding at the relay. However, the error propagation effect resulting from unsuccessful decoding at the relay may cause significant performance loss in some practical scenarios. Improved decoders reported in the literature typically assume a certain memoryless error model, which ignores the fact that relay decoding errors are correlated and bursty. In this paper, we propose a novel trellis error model (TEM) to accurately represent the statistics of relay decoding errors and construct two TEM-based iterative decoders (TEM-IDs) with two and three components, respectively. The TEM-ID with three components has a lower complexity than that of the TEM-ID with two components at the cost of minor performance loss. We also derive a new BER bound for the near maximum likelihood decoding of the DTC using a uniform interleaver. In addition, the extrinsic information transfer chart analysis is applied to estimate the threshold performance of the TEM-ID for large code lengths. Extensive simulation results verify that the new decoders can perform close to the derived BER bound and outperform existing decoders. Finally, we show that the TEM-ID can be extended for general distributed concatenated coding systems.
机译:在本文中,我们基于解码转发协议重新检查三节点单向中继信道上的分布式Turbo码(DTC)的解码问题。在传统的DTC方案中,目的地的解码器在中继站假设无错误的维特比解码。但是,在某些实际情况下,由于中继处解码失败而导致的错误传播效应可能会导致严重的性能损失。文献中报道的改进的解码器通常采用某种无记忆的错误模型,该模型忽略了中继解码错误是相关且突发的事实。在本文中,我们提出了一种新颖的网格错误模型(TEM)来准确表示中继解码错误的统计数据,并构造两个分别具有两个和三个分量的基于TEM的迭代解码器(TEM-ID)。具有三个组件的TEM-ID具有比具有两个组件的TEM-ID更低的复杂性,但代价是性能损失较小。我们还使用统一交织器为DTC的接近最大似然解码得出了一个新的BER边界。此外,外部信息传输图分析可用于估计大代码长度的TEM-ID的阈值性能。大量的仿真结果证明,新的解码器可以接近导出的BER边界,并且性能优于现有的解码器。最后,我们表明可以将TEM-ID扩展为通用的分布式级联编码系统。

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