无功控制设备在电力系统稳定与安全性能提高中的应用

M. Wu, P. Rastgoufard
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引用次数: 2

摘要

本文的目的是研究如何确定无功控制设备的数量、大小和位置,以提高电力系统的整体稳态稳定性和安全性能。由于机械开关并联电容器组是电力系统中应用最广泛的无功控制设备,因此本研究中考虑的典型无功控制设备是机械开关并联电容器组。本文提出了两种算法。采用第一种算法对所提出的电力系统进行灵敏度分析,通过形成最敏感母线群(MSBG)来减少计算量,该母线群中的母线不仅对母线电压对负载变化最敏感,而且对负载也很重。第二种算法用于求给定的SCB设计方案在MSBG中不同母线位置上所定义的系统全局稳态稳定裕度和安全措施的最大值。第二种算法的结果将显示能够最大化系统全局稳态稳定性和电力系统安全性能的scb的数量、最佳大小和位置。利用所提出的算法确定39总线新英格兰电力系统中scb的数量、大小和位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The application of reactive power control equipment in power system stability and security performance enhancement
The purpose of this paper is to study how to determine the number, sizes, and locations of reactive power control equipment to increase the power system global steady-state stability and security performance. The typical reactive power control equipment considered in this research is the mechanical switched shunt capacitor banks (SCBs) because SCBs are the most widely used reactive power control equipment in the power systems. Two algorithms are proposed in this paper. The first algorithm is used to do the proposed power system sensitivity analysis in order to reduce the computing burden by forming the most sensitive bus group (MSBG) with the buses in it are not only most sensitive of the bus voltage with respect to the change of load but also with heavy loading. The second algorithm is used to find the maximum values of the defined system global steady-state stability margin and security measure for adding the given SCB design plan at different bus location in MSBG. The results of the second algorithm will show the number, best sizes and locations of SCBs that can maximize the system global steady-state stability and security performance of the power systems. The proposed algorithms are employed to determine the number, size and locations of SCBs in 39-Bus New England power system.
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