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Performance of polar coding for the power line communications in the presence of impulsive noise

机译:在存在脉冲噪声的情况下电力线通信的极性编码性能

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摘要

In this study, the authors propose a polar coding (PC) scheme for the power line communication (PLC) system to cope with the impulsive noise and thereby promote the transmission performance. This new error-correcting coding scheme is essentially inspired on a novel conception of channel polarisation. To be specific, via recursively channel combing and splitting, a group of channels with ideal transmission conditions, that is having a capacity of 1, will be constructed to carry the useful information, while the other band sub-channels bear useless information. The decoding performance of PC under realistic impulsive noises is investigated under the condition that the impulsive noise is modelled by a well-known Middleton Class-A model. To mitigate the error propagation caused by sudden strong impulsive noises and further enhance the decoding performance, a matrix interleave operator is integrated. Simulations validate the suggested PC scheme in PLC systems. Compared with another commonly used low-density parity-check (LDPC) coding scheme, the suggested PC scheme, which has the low complexity, can significantly improve the bit error rate (BER) performance of PLC transmissions with impulsive interference. The PC scheme, as demonstrated by simulation results, can be of great importance to practical PLC systems.
机译:在这项研究中,作者为电力线通信(PLC)系统提出了一种极性编码(PC)方案,以应对脉冲噪声,从而提高传输性能。这种新的纠错编码方案本质上是受新颖的信道极化概念启发。具体而言,通过递归信道合并和分裂,将构造具有理想传输条件的一组信道,其容量为1,以承载有用信息,而其他频带子信道则承载无用信息。在脉冲噪声由著名的Middleton A类模型建模的条件下,研究了PC在实际脉冲噪声下的解码性能。为了减轻突然的强烈脉冲噪声引起的错误传播并进一步提高解码性能,集成了矩阵交织运算符。仿真验证了PLC系统中建议的PC方案。与另一种常用的低密度奇偶校验(LDPC)编码方案相比,建议的PC方案具有较低的复杂度,可以显着提高具有脉冲干扰的PLC传输的误码率(BER)性能。仿真结果表明,PC方案对于实际的PLC系统可能非常重要。

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