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OFDM-based power-line communication enhancement using a turbo coded adaptive impulsive noise compensator

机译:使用Turbo编码的自适应脉冲噪声补偿器的基于OFDM的电力线通信增强

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摘要

In this paper, we propose a novel estimation and decoding scheme for power-line communication (PLC) systems in impulsive noise environments. The proposed scheme is based on the turbo coding combined with adaptive noise compensation to reduce burst errors and multipath effects. For this purpose, the PLC channel and noise models are introduced, then, the turbo encoder/decoder are inserted in the mapper/demapper and the pilot insertion block for the sake of enhancing preliminary estimation of the transmitted orthogonal frequency division multiplexing signals. The proposed impulsive noise compensator is based on the estimation of the impulse bursts using a new blanking/clipping function, and on the estimation of the signal to impulse noise ratio and the peak to average power ratio. Simulation results illustrate that receivers with combined turbo coding and the proposed noise compensator drastically outperform existing receivers under impulsive noise. In comparison to some existing schemes, the proposed scheme reaches its perfect performance in a reduced 15-paths environment, when the bit error rate and mean square error performance are tested. The improvements in SNR performance are more than 16 dB for BPSK modulation and can reach 12-20 dB for 16-QAM modulation, when a high impulsive noise level is considered.
机译:在本文中,我们为脉冲噪声环境中的电力线通信(PLC)系统提出了一种新颖的估计和解码方案。所提出的方案基于结合了自适应噪声补偿的Turbo编码,以减少突发错误和多径效应。为此,引入PLC信道和噪声模型,然后,将turbo编码器/解码器插入映射器/解映射器和导频插入块中,以增强对所发送的正交频分复用信号的初步估计。所提出的脉冲噪声补偿器基于使用新的消隐/削波函数的脉冲猝发的估计,以及基于信号与脉冲噪声之比和峰均功率之比的估计。仿真结果表明,在脉冲噪声下,结合了Turbo编码和建议的噪声补偿器的接收机性能大大优于现有的接收机。与某些现有方案相比,当测试误码率和均方误差性能时,该方案在减少的15路径环境中达到了理想的性能。考虑到高脉冲噪声水平,对于BPSK调制,SNR性能的提高超过16 dB,对于16-QAM调制,可以达到12-20 dB。

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