电动弹簧分布式电压控制:与STATCOM的比较

Xiao Luo, Zohaib Akhtar, C. Lee, B. Chaudhuri, Siew-Chong Tan, S. Hui
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引用次数: 8

摘要

只提供摘要形式。作为一种有效的分布式电压控制手段,近年来人们提出了电弹簧的概念。其想法是调节关键(C)负载的电压,同时允许非关键(NC)阻抗型负载(例如,热水器)改变其功耗,从而有助于需求侧响应。本文将ES分布式电压控制与传统的带静态补偿器的单点电压控制进行了比较。对于给定的电源电压变化范围,比较每个选项在连接点产生所需电压调节所需的总无功容量。本文首先介绍了单个ES和STATCOM的简单案例研究,表明ES和STATCOM需要相当的无功功率来实现相似的电压调节。通过对IEEE 13总线测试馈线系统和香港沙罗湾部分配电网的类似案例研究,进一步证实了STATCOM和ES之间的比较。在这两种情况下,结果表明一组ESs在总无功容量更小的情况下比STATCOM实现了更好的总电压调节。ES能力与临界载荷和数控载荷比例的关系也得到了证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed voltage control with electric springs: Comparison with STATCOM
Summary form only given. The concept of electric spring (ES) has been proposed recently as an effective means of distributed voltage control. The idea is to regulate the voltage across the critical (C) loads while allowing the noncritical (NC) impedance-type loads (e.g., water heaters) to vary their power consumption and thus contribute to demand-side response. In this paper, a comparison is made between distributed voltage control using ES against the traditional single point control with STATic COMpensator (STATCOM). For a given range of supply voltage variation, the total reactive capacity required for each option to produce the desired voltage regulation at the point of connection is compared. A simple case study with a single ES and STATCOM is presented first to show that the ES and STATCOM require comparable reactive power to achieve similar voltage regulation. Comparison between a STATCOM and ES is further substantiated through similar case studies on the IEEE 13-bus test feeder system and also on a part of the distribution network in Sha Lo Wan Bay, Hong Kong. In both cases, it turns out that a group of ESs achieves better total voltage regulation than STATCOM with less overall reactive power capacity. Dependence of the ES capability on proportion of critical and NC load is also shown.
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