首页> 外文会议>Annual allerton conference on communication control, and computing;Allerton conference on communication control, and computing;Allerton 2009 >Interactive Encoding and Decoding based on Syndrome Accumulation over Binary LDPC Ensembles: Universality and Rate-Adaptivity
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Interactive Encoding and Decoding based on Syndrome Accumulation over Binary LDPC Ensembles: Universality and Rate-Adaptivity

机译:基于二进制LDPC集合上的综合征累积的交互式编码和解码:通用性和速率适应性

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In this paper we investigate the performance of linear interactive encoding and decoding based on syndrome accumuIation(SA-IED) over binary LDPC ensembles. Assume that the source alphabet is GF(2), and the side information alphabet is finite. It is shown that we can construct universal SA-IED schemes, which are asymptotically optimal for any stationary ergodic source-side information pair. Our analysis further shows that the word error probability will approach 0 sub-exponentially with respect to the block length, while at the same time, the rate approaches H(X|Y) as the average variable node degree of the LDPC ensemble approaches ∞. Further, if the source and side information are correlated through a binary symmetrical memoryless channel, but the cross-over probability of the channel is not known to either the encoder or the decoder, our result on the performance of SA-IED can be further improved for LDPC ensembles with finite average variable node degree. Simulation results on binary source-side information pairs confirm the theoretical analysis above, and further show that SA-IED schemes using LDPC codes coupled with linear time belief propagation decoding consistently outperform Slepian-Wolf coding schemes based on LDPC codes.
机译:在本文中,我们研究了基于二元LDPC集合的校正子累加(SA-IED)的线性交互式编码和解码的性能。假设源字母是GF(2),并且辅助信息字母是有限的。结果表明,我们可以构造通用的SA-IED方案,该方案对于任何平稳的遍历源端信息对都是渐近最优的。我们的分析进一步表明,相对于块长度,字错误概率将以次指数方式接近0,而与此同时,随着LDPC集成的平均变量节点度接近∞,该比率接近H(X | Y)。此外,如果源和辅助信息通过二进制对称的无记忆通道进行关联,但是无论编码器还是解码器都不知道该通道的穿越概率,则可以进一步改善SA-IED性能的结果具有有限平均变量节点度的LDPC集成二进制源侧信息对的仿真结果证实了上述理论分析,并进一步表明,使用LDPC码结合线性时间置信度传播解码的SA-IED方案始终优于基于LDPC码的Slepian-Wolf编码方案。

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