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Modeling and analysis of noise effects on broadband power-line communications

机译:宽带电力线通信中噪声影响的建模与分析

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摘要

Power line noise is known to affect the performance of broadband power-line communications significantly. This paper presents a frequency-domain approach to characterize and model the statistical variation of power-line noise. The model considers both the background noise and the impulsive noise. The background noise model is based on statistical analysis of the results from two long-term measurements of noise spectrum conducted at two separate sites of a laboratory and a residential apartment. On the other hand, the impulsive noise model is obtained by direct measurements from the noise sources (i.e., various electrical household appliances). The amount of impulse noise reaching a power-line communications (PLC) receiver can then be determined with consideration of the channel transfer characteristics between the noise sources and the PLC receiver. Using these noise models, the performance of two major classes of digital modulation schemes, namely single-carrier modulation and multicarrier modulation, are analyzed and compared. It is found that the multicarrier scheme performs better than the single-carrier scheme when subjected to the observed power-line noise with non-Gaussian statistics.
机译:众所周知,电力线噪声会严重影响宽带电力线通信的性能。本文提出了一种频域方法来表征和建模电力线噪声的统计变化。该模型同时考虑了背景噪声和脉冲噪声。背景噪声模型基于对实验室和住宅公寓两个不同地点进行的两次噪声频谱长期测量结果的统计分析。另一方面,通过从噪声源(即各种家用电器)直接测量获得脉冲噪声模型。然后,可以考虑噪声源和PLC接收器之间的通道传输特性,确定到达电力线通信(PLC)接收器的脉冲噪声量。使用这些噪声模型,分析和比较了两大类数字调制方案的性能,即单载波调制和多载波调制。发现在经受具有非高斯统计量的观测到的电力线噪声时,多载波方案的性能优于单载波方案。

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