Methods for Assessment of Supraharmonics in Power Systems. Part I: Theoretical Issues

L. Alfieri, A. Bracale, P. Varilone, Zbigniew Leonowicz, P. Kostyła, T. Sikorski, M. Wasowski
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引用次数: 7

Abstract

Modern Smart Grids (SGs) are characterized by the simultaneous presence of time-varying and non-linear loads as well as distributed energy sources with power converters which contribute to wide spectra waveform distortions. Moreover, one of the crucial device of the SG architectures is the smart metering systems which utilize high frequencies for the power line communication (PLC) transmission. In particular, the presence of spectral components in the range of 2\div 150kHz (supraharmonics) has recently become an issue of great interest due to the interaction between widespread diffusion of high-spectral emission devices (e.g., end-user devices and converter-interfaced distributed generation systems) and power line communication systems. The complexity of these waveforms distortions makes their assessment a challenge. This paper critically analyses and compares two methods proposed in recent literature which seem particularly suitable for the spectral analysis of waveforms with wide spectra. One of the methods is based on the sliding-window discrete Fourier transform (SWDFT) referring to IEC standard harmonic estimation. The second method utilizes the sliding-window wavelet-modified ESPRIT-based method (SWWMEM). This is a companion document to a paper of the same title, Part II, where the methods are tested on synthetic and measured waveforms in terms of accuracy and computational efforts.
电力系统中超谐波的评定方法。第一部分:理论问题
现代智能电网(SGs)的特点是同时存在时变和非线性负载以及带有功率转换器的分布式能源,这些都导致了宽频谱波形畸变。此外,SG体系结构的关键设备之一是利用电力线通信(PLC)传输高频的智能计量系统。特别是,由于高光谱发射设备(例如,终端用户设备和转换器接口分布式发电系统)和电力线通信系统之间广泛扩散的相互作用,最近在2\div 150kHz(超谐波)范围内的频谱成分的存在已成为一个非常感兴趣的问题。这些波形失真的复杂性使其评估成为一项挑战。本文批判性地分析和比较了最近文献中提出的两种方法,这两种方法似乎特别适合于宽光谱波形的频谱分析。其中一种方法是基于IEC标准谐波估计的滑动窗口离散傅里叶变换(SWDFT)。第二种方法采用基于滑动窗口小波修正esprit的方法(SWWMEM)。这是一篇同名论文的配套文件,第二部分,其中方法在合成和测量波形的准确性和计算方面进行了测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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