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Synchronization Recovery and State Model Reduction for Soft Decoding of Variable Length Codes

机译:变长码软解码的同步恢复和状态模型简化

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Variable length codes (VLCs) exhibit loss of synchronization problems when transmitted over noisy channels. Trellis decoding techniques based on Maximum A Posteriori (MAP) estimators are often used to minimize the error rate on the estimated sequence. If the number of symbols and/or bits transmitted is known by the decoder, termination constraints can be incorporated in the decoding process. All the paths in the trellis which do not lead to a valid sequence length are suppressed. This correspondence presents an analytic method to assess the expected error resilience of a VLC when trellis decoding with a sequence length constraint is used. The approach is based on the computation, for a given code, of the amount of information brought by the constraint. It is then shown that this quantity is not significantly altered by appropriate trellis states aggregation. This proves that the performance obtained by running a length-constrained Viterbi decoder on aggregated state models approaches the one obtained with the bit/symbol trellis, with a significantly reduced complexity. It is then shown that the complexity can be further decreased by projecting the state model on two state models of reduced size
机译:当通过嘈杂的信道传输时,可变长度代码(VLC)表现出同步问题。通常使用基于最大后验(MAP)估计器的网格解码技术来最小化估计序列的错误率。如果解码器知道传输的符号和/或比特的数量,则可以在解码过程中加入终止约束。网格中所有不会导致有效序列长度的路径均被抑制。当使用具有序列长度约束的网格解码时,此对应关系提供了一种评估VLC的预期错误恢复能力的分析方法。该方法基于对给定代码的约束所带来的信息量的计算。然后表明,适当的格状状态聚集不会明显改变此数量。这证明了通过在聚合状态模型上运行长度受约束的维特比解码器获得的性能接近使用位/符号网格获得的性能,并且复杂度大大降低。然后表明,通过将状态模型投影到两个尺寸减小的状态模型上,可以进一步降低复杂度

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