基于ofdm的PLC系统中模拟非线性滤波抑制脉冲噪声的性能

Reza Barazideh, B. Natarajan, A. V. Nikitin, R. Davidchack
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引用次数: 12

摘要

异步和周期平稳脉冲噪声会严重影响基于ofdm的电力线通信系统的误码率。在本文中,我们分析了一种自适应非线性模拟前端滤波器,它可以减轻各种类型的脉冲噪声,而不会产生自干扰和其他非线性方法(如裁剪和消隐)引起的带外功率泄漏等不利影响。我们提出的自适应非线性差分限幅器(ANDL)是由一个线性模拟滤波器通过应用基于反馈的非线性构成的,由单个分辨率参数控制。我们提出了一种简单实用的方法来确定该分辨率参数的值,以确保在不影响期望的OFDM信号的情况下减轻脉冲。与许多先前假设统计噪声模型的脉冲噪声缓解方法不同,ANDL对噪声分布的确切性质是盲目的,并且被设计为与现有的线性前端滤波器完全兼容。我们通过模拟符合IEEE标准的基于ofdm的窄带PLC来证明ANDL的效力。结果表明,在脉冲噪声环境下,该方法在降低误码率方面优于其他方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of analog nonlinear filtering for impulsive noise mitigation in OFDM-based PLC systems
Asynchronous and cyclostationary impulsive noise can severely impact the bit-error-rate (BER) of OFDM-based powerline communication systems. In this paper, we analyze an adaptive nonlinear analog front end filter that mitigates various types of impulsive noise without detrimental effects such as self-interference and out-of-band power leakage caused by other nonlinear approaches like clipping and blanking. Our proposed Adaptive Nonlinear Differential Limiter (ANDL) is constructed from a linear analog filter by applying a feedback-based nonlinearity, controlled by a single resolution parameter. We present a simple practical method to find the value of this resolution parameter that ensures the mitigation of impulsive without impacting the desired OFDM signal. Unlike many prior approaches for impulsive noise mitigation that assume a statistical noise model, ANDL is blind to the exact nature of the noise distribution, and is designed to be fully compatible with existing linear front end filters. We demonstrate the potency of ANDL by simulating the OFDM-based narrowband PLC compliant with the IEEE standards. We show that the proposed ANDL outperforms other approaches in reducing the BER in impulsive noise environments.
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