Symmetric Distributed Joint Source-Channel Coding Using Raptor Codes

Xuqi Zhu, Wenbo Zhang, Bin Li, Lin Zhang
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Abstract

Distributed compression of correlated sources has been discussed much in wireless sensor networks, while the error-resilient implementation of this efficient coding strategy is one of the crucial issues for applications. In this paper, a symmetric Distributed Joint Source-Channel Coding (DJSCC) scheme is proposed by using Raptor codes for the independent channels case. The channel noise and the correlation of sources are considered simultaneously within one set of encoder and decoder. The symmetric structure of the proposed approach leads to more flexible and balanced rate allocation, and the rateless property of Raptor codes also guarantees tractable code rates and error correction. At last, the simulation results demonstrate that our scheme outperforms the existing LDPC-based scheme at low SNR.
使用猛禽码的对称分布式联合源信道编码
在无线传感器网络中,相关源的分布式压缩已经被广泛讨论,而这种高效编码策略的容错实现是应用中的关键问题之一。针对独立信道的情况,提出了一种采用Raptor码的对称分布式联合源信道编码(DJSCC)方案。在一组编码器和解码器中同时考虑信道噪声和源的相关性。该方法的对称结构使得速率分配更加灵活和均衡,Raptor码的无速率特性也保证了易于处理的码率和纠错。最后,仿真结果表明,该方案在低信噪比下优于现有的基于ldpc的方案。
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