Impact Assessment of Power Electronic-based Generation Units on Harmonic Response of Power Systems Using SVD based Method

Armando D.T. Acosta, A. Perilla, E. Rakhshani, J. R. Torres, M. Meijden
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Abstract

The connection of offshore wind turbines to the European grid has been growing in the recent years. Many European countries are adopting this renewable energy and are increasing the number of wind power plant additions into their electrical transmission networks. In this paper, the impacts of harmonic frequencies introduced by the wind parks in a low-inertia grid are studied. Despite of classical methods which are mainly based on single-input single-output (SISO) systems, a novel approach, based on Singular Value Decomposition (SVD) techniques, considering a multiple-input multiple-output (MIMO) system is presented and discussed. The proposed SVD is a powerful mathematical tool to discover the harmonic frequencies. It can be used to analyse the system at a certain harmonic frequency and show which input(s) of the system will have more influence in the system dynamics and which output(s) will be the most affected by that input(s). According to the presented study, an SVD based methodology is provided to model any electrical network via its passive electrical elements, and to perform a harmonic analysis.
基于奇异值分解的电力电子发电机组对电力系统谐波响应影响评估
近年来,海上风力涡轮机与欧洲电网的连接一直在增长。许多欧洲国家正在采用这种可再生能源,并在其电力传输网络中增加风力发电厂的数量。本文研究了低惯性电网中风电场引入的谐波频率对电网性能的影响。摘要针对传统的多输入多输出(MIMO)系统分析方法,提出并讨论了一种基于奇异值分解(SVD)的多输入多输出(MIMO)系统分析方法。所提出的奇异值分解是发现谐波频率的有力数学工具。它可以用来分析某一谐波频率下的系统,并显示系统的哪个输入对系统动力学的影响更大,哪个输出受该输入的影响最大。在此基础上,提出了一种基于奇异值分解的方法,通过无源电元件对电网进行建模,并进行谐波分析。
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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