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Adaptive Noise Mitigation in Impulsive Environment: Application to Power-Line Communications

机译:脉冲环境中的自适应噪声缓解:在电力线通信中的应用

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摘要

In this paper, we address the general issue of asynchronous impulsive noise mitigation and its application over coded power-line communications (PLC). As is well known, PLC channels usually suffer from significant degradation due to impulsive interference generated by electrical appliances. The use of a level limiter is a simple and intuitive technique, widely used to mitigate the noxious effect of impulsive noise in these channels. However, the determination of the clipping threshold remains, most of the time, empirical, and the impulse statistics are usually assumed to be known. In a previous study, we proposed an original threshold determination based on signal detection theory, using the well-known false alarm and good detection tradeoff. Here, we further investigate the proposed optimization method in closed form. We compare two tradeoff criteria by means of a receiver operating curves analysis. We clearly show that the resulting decision fits well with encountered bit-error rate performances. We also evaluate the influence of impulsive noise statistics estimation on the performance of the proposed approach. To do so, we assess the robustness of the classical method of moments on Gaussian mixture estimation. It clearly appears that the estimation method is reliable for reasonable values of the impulse occurrence. As one of the main results of this paper, we make a proposal for impulse statistics estimation under ¿severe¿ conditions (i.e., for very rare impulse events, based on impulse detection over corrupted OFDM symbols). Subsequently, we propose a general scheme of automatic impulse mitigation, according to the disturbance ratio of the environment. Finally, the performance of the approach is evaluated over the Home-Plug AV (HPAV) physical layer.
机译:在本文中,我们解决了异步脉冲噪声缓解的一般问题及其在编码电力线通信(PLC)上的应用。众所周知,由于电气设备产生的脉冲干扰,PLC通道通常会遭受明显的劣化。电平限制器的使用是一种简单直观的技术,已广泛用于减轻这些通道中脉冲噪声的有害影响。但是,裁剪阈值的确定在大多数情况下仍然是经验性的,并且通常假定脉冲统计信息是已知的。在先前的研究中,我们提出了一种基于信号检测理论的原始阈值确定方法,该方法使用了众所周知的错误警报和良好的检测折衷方法。在这里,我们进一步研究封闭形式的建议优化方法。我们通过接收器工作曲线分析比较两个折衷标准。我们清楚地表明,得出的决定与遇到的误码率性能非常吻合。我们还评估了脉冲噪声统计估计对所提出方法的性能的影响。为此,我们评估了经典矩量法对高斯混合估计的鲁棒性。很明显,该估计方法对于脉冲发生的合理值是可靠的。作为本文的主要结果之一,我们提出了在ƒƒÂ,,severeÂÂ,的条件下(例如,对于非常罕见的脉冲事件,基于对损坏的OFDM符号)。随后,根据环境的干扰率,提出了一种自动减少脉冲的通用方案。最后,在Home-Plug AV(HPAV)物理层上评估了该方法的性能。

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