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Wyner-Ziv coding based on TCQ and LDPC codes

机译:基于TCQ和LDPC码的Wyner-Ziv编码

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This paper considers TCQ and LDPC codes for the quadratic Gaussian Wyner-Ziv problem. After TCQ of the source input X, LDPC codes are used to implement Slepian-Wolf coding of the quantized source input Q(X) given the side information Y at the decoder. Assuming ideal Slepian-Wolf coding in the sense of achieving the theoretical limit H (Q(X)|Y), it is shown that Slepian-Wolf coded TCQ (SWC-TCQ) performs 0.2 dB away from the Wyner-Ziv distortion-rate function D/sub WZ/*(R) at high rate. This result mirrors that of entropy-coded TCQ in classic source coding and establishes the connection between performances of high-rate Wyner-Ziv coding and classic source coding. Practical designs with TCQ, irregular LDPC codes (for Slepian-Wolf coding) and optimal estimation at the decoder perform 0.83 dB away from D/sub WZ/*(R) at medium bit rates (e.g., /spl ges/ 2.3 b/s). With 2-D trellis-coded vector quantization, the performance gap to D/sub WZ/*(R) is only 0.66 dB at 1.0 b/s and 0.47 dB at 3.3 b/s.
机译:本文考虑了二次高斯Wyner-Ziv问题的TCQ和LDPC码。在源输入X的TCQ之后,LDPC码用于在解码器给定辅助信息Y的情况下对量化的源输入Q(X)进行Slepian-Wolf编码。假设在达到理论极限H(Q(X)| Y)的意义上是理想的Slepian-Wolf编码,则表明Slepian-Wolf编码的TCQ(SWC-TCQ)与Wyner-Ziv失真率相距0.2 dB高功能D / sub WZ / *(R)。该结果反映了经典源编码中的熵编码TCQ的结果,并建立了高速率Wyner-Ziv编码性能与经典源编码之间的联系。带有TCQ的实际设计,不规则LDPC码(用于Slepian-Wolf编码)和解码器的最佳估计,在中等比特率(例如/ spl ges / 2.3 b / s)下,与D / sub WZ / *(R)的距离为0.83 dB )。通过二维网格编码矢量量化,D / sub WZ / *(R)的性能差距在1.0 b / s时仅为0.66 dB,而在3.3 b / s时仅为0.47 dB。

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