Optimal Placement of Phasor Measurement Units for Harmonic State Estimation in Unbalanced Distribution System Using Genetic Algorithms

H. B. Bahabadi, A. Mirzaei, M. Moallem
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引用次数: 12

Abstract

In this paper, a genetic-based algorithm is presented for optimal placement of phasor measurement units, which minimizes the number of the units and enhances the accuracy of the harmonic state estimation solutions. Also, weighted least square estimation is used for harmonic state estimation, which is based on singular value decomposition rather than the normal equations. The singular value decomposition approach eliminates the need of observability analysis prior to estimation. Optimal number and position of phasor measurement units among three different cases for harmonic state estimation in unbalanced distribution systems are compared. In first case, it is assumed that phasor measurement unit has enough channels to measure bus voltage phasor and all current phasors connected to this bus. In two other cases, phasor measurement unit has only single channel to measure a three-phase current. In one case, phasor measurement unit measured a current phasors along one branch that is connected to the bus, and in another case, phasor measurement unit measures three single phase current phasors along 1, 2 or 3 branches that are connected to the bus. The proposed algorithms for harmonic state estimation and optimal measurement placement are applied on a real 58-bus unbalanced distribution system and the results are presented.
基于遗传算法的不平衡配电系统谐波状态估计相量测量单元优化配置
本文提出了一种基于遗传的相量测量单元优化配置算法,使相量测量单元数量最小化,提高了谐波状态估计解的精度。此外,加权最小二乘估计用于谐波状态估计,它是基于奇异值分解而不是普通方程。奇异值分解方法消除了在估计之前进行可观察性分析的需要。比较了三种不平衡配电系统谐波状态估计中相量测量单元的最优个数和位置。在第一种情况下,假设相量测量单元有足够的通道来测量母线电压相量和连接到该母线的所有电流相量。在另外两种情况下,相量测量单元只有一个通道来测量三相电流。在一种情况下,相量测量单元沿着连接到母线的一个支路测量一个电流相量,在另一种情况下,相量测量单元沿着连接到母线的1、2或3个支路测量三个单相电流相量。将所提出的谐波状态估计和最优测量位置算法应用于实际的58母线不平衡配电系统,并给出了结果。
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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