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Distributed source coding in wireless sensor networks using LDPC coding: the entire Slepian-Wolf rate region

机译:使用LDPC编码的无线传感器网络中的分布式源编码:整个Slepian-Wolf速率区域

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In this paper, we propose a scheme for distributed source coding (DSC) that achieves any arbitrary rate on the Slepian-Wolf rate region using a single systematic LDPC code. This method is based on sending a fraction of the information bits along with a fraction of parity bits generated by the LDPC code. First, we study the problem of DSC of two correlated sources at the symmetric rate. We propose to use nonuniform LDPC codes for this application. Then, we generalize our approach to any arbitrary rate. The detailed construction of this scheme is investigated. We illustrate that the design procedure for the LDPC code simplifies to the design of rate-adaptive LDPC codes that need unequal error protection. It is shown that the performance of DSC at any arbitrary rate is almost the same as that of asymmetric rates. Because of the proposed decoding algorithm, each of the sources is decoded independently (only part of the information bits are being exchanged between the decoders). Therefore, this approach does not suffer from the problems of heavy damage or propagation of errors. This method can be easily applied to joint source-channel coding.
机译:在本文中,我们提出了一种用于分布式源编码(DSC)的方案,该方案可使用单个系统LDPC码在Slepian-Wolf速率区域上实现任意速率。该方法基于发送信息比特的一部分以及由LDPC码生成的奇偶校验比特的一部分。首先,我们以对称速率研究两个相关源的DSC问题。我们建议对此应用程序使用非均匀的LDPC码。然后,我们将我们的方法推广到任意比率。研究了该方案的详细构造。我们说明,LDPC码的设计过程简化为需要不均等错误保护的速率自适应LDPC码的设计。结果表明,DSC在任意速率下的性能几乎与非对称速率下的性能相同。由于提出了解码算法,每个源都被独立解码(仅部分信息位在解码器之间交换)。因此,该方法不会遭受严重损坏或错误传播的问题。该方法可以容易地应用于联合源信道编码。

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