Volt/Var Control on Distribution Systems with Lateral Branches Using Shunt Capacitors and Voltage Regulators Part I: The Overall Problem

J. Grainger, S. Civanlar
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引用次数: 223

Abstract

In this paper (Part I) and two companion papers (Part II and Part III) the problem of volt/var control on general radial distribution systems is formulated, simplified and solved. The objective is to minimize the peak power and energy losses while keeping the voltage within specified limits under varying load conditions. The decision variables to be optimally determined are (i) the locations, sizes and the real-time control of the specified number of ON/OFF switched and fixed capacitors and (ii) the locations and real-time control of the minimum number of voltage regulators. It is shown in this paper (Part I) that the regulator (volt) and the capacitor (var) problem may be treated as two decoupled problems. Part II of this set of three papers, conjoined with Part 1. provides the analytical tools by which optimal solutions for both problems may be determined. Application of the theory to representative radial systems is shown in Part III whhich also illustrates the economic benefits and numerical results achievable through both regulation and compensation schemes.
并联电容器和稳压器对侧支路配电系统的电压/无功控制。第一部分:总体问题
本文(第一部分)和两篇配套论文(第二部分和第三部分)阐述、简化和解决了一般径向配电系统的电压/无功控制问题。目标是尽量减少峰值功率和能量损失,同时在不同的负载条件下保持电压在规定的范围内。需要最优确定的决策变量是(i)指定数量的开/关开关电容器和固定电容器的位置、尺寸和实时控制,以及(ii)最小数量电压调节器的位置和实时控制。本文(第一部分)表明,稳压器(伏特)和电容器(var)问题可视为两个解耦问题。这三篇论文的第二部分,与第一部分相结合。提供分析工具,以确定这两个问题的最佳解决方案。第三部分展示了该理论在典型径向系统中的应用,并说明了通过调节和补偿方案可实现的经济效益和数值结果。
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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