阈值和比例因子优化在PLC系统中增强脉冲噪声消除

Khaled Maaiuf Rabie, E. Alsusa
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引用次数: 6

摘要

电力线通信(PLC)被认为是智能电网的骨干。然而,这些信道上的脉冲噪声(IN)仍然是导致通信信号退化的主要因素。缓解PLC通道上的IN的一种简单方法是,当输入信号超过某个阈值时,在接收器之前使用非线性预处理器对输入信号进行空白和/或剪切。以混合方式应用消隐和裁剪的组合被证明可以提供最佳性能。混合方案具有两个阈值T1和T2 (T1 = α.T2),其中a为比例因子。以往的研究假设比例因子为固定值,并发现优化阈值T2是提高性能的关键。在本文中,我们证明了该方案的性能不仅对阈值敏感,而且对比例因子敏感。考虑到这一点,制定了输出信噪比作为阈值和比例因子的函数的数学表达式,并用于优化混合方案的性能。仿真结果验证了我们的分析。结果表明,采用最优选择阈值和比例因子的自适应混合方案总是优于其他非线性方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Threshold and scaling factor optimization for enhancing impulsive noise cancellation in PLC systems
Power-line communication (PLC) is considered as the backbone of smart grid. Impulsive noise (IN) over such channels, however, remains the main factor responsible for degrading communication signals. A simple method to mitigate IN over PLC channels is to precede the receiver with a nonlinear preprocessor to blank and/or clip the incoming signal when it exceeds a certain threshold. Applying a combination of blanking and clipping in a hybrid fashion was shown to provide the best performance. The hybrid scheme is characterized by two thresholds T1 and T2 (T1 = α.T2), where a is a scaling factor. Previous studies assume a fixed value for the scaling factor and found that optimizing the threshold T2 is the key to enhance performance. In this paper, we show that the performance of this scheme is sensitive not only to the threshold, but also to the scaling factor. With this in mind, a mathematical expression for the output signal-to-noise ratio as a function of the threshold and scaling factor is formulated and used to optimize the hybrid scheme performance. Simulation results are also provided to validate our analysis. The results reveal that using an adaptive hybrid scheme with an optimally selected threshold and scaling factor always outperforms other nonlinear schemes.
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