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The sensitivity of joint source-channel coding based on double protograph LDPC codes to source statistics

机译:基于双重质子LDPC码的联合源通道编码对源统计的敏感性

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Although the joint source and channel coding (JSCC) systems constructed from double protograph low-density parity-check (DP LDPC) codes has been demonstrated to possess good performance, especially when they are applied into the transmission of radiography images, where the frameworks of both transmitter and receiver still need to be further optimised for the sake of achieving bit error rate (BER) performance under 10 over wireless transmission environment. This paper focuses on the perspective of transmitting terminal to investigate what factors will affect the performance of DP LDPC schemes so that the new transmitting models can be further designed. Specifically, this paper mainly concentrates on the sensitivity of DP LDPC scheme to source statistics. The simulation results show that the entropy of source information is a dominate factor for sources with low entropy while the correlated side information plays a vital role in sources with large entropy, which provides explicit directions for further JSCC coding structures optimisation.
机译:尽管已经证明了由双重保护低密度奇偶奇偶校验(DP LDPC)代码构成的联合源和通道编码(JSCC)系统具有良好的性能,尤其是当它们被应用于射线照相图像的传输时,其中框架为了在无线传输环境下实现10下的10下实现误码率(BER)性能,还需要进一步优化发送器和接收器。本文侧重于传输终端调查DP LDPC方案的性能的视角,以便进一步设计新的传输模型。具体而言,本文主要集中于DP LDPC方案对源统计的灵敏度。仿真结果表明,源信息的熵是具有低熵的源的主导因素,而相关侧信息在具有大熵的源中起着至关重要的作用,其提供了用于其他JSCC编码结构优化的明确方向。

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