The use of tangent vectors for voltage collapse analysis

A.C.M. Valle, G. C. Guimarães, J. C. de Oliveira, A. J. de Morais
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引用次数: 3

Abstract

Nowadays, it has been observed that the load demand increase in many electrical systems has not been matched with the necessary investments to upgrade the power generation and transmission. This has caused such systems to work more stressed leading to voltage stability problems. The understanding of the events leading to the voltage collapse phenomenon has been the aim of many researchers which resulted in the development of a great number of simulation programs. Many tools have been chosen to help determine the weakest system bus with less computational effort as possible in order to enable a quick response regarding the search of preventive measures to improve the system voltage stability level. In this sense, eigenvectors and tangent vectors are very useful sources of information. These two elements combined allow the determination of the critical bus and the generators which most influence the system stability. These analyses will allow the operators to make decisions on what variables to work on in order to avoid the voltage collapse.
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切线矢量在电压崩溃分析中的应用
目前,人们观察到许多电力系统的负荷需求增长与升级发电和输电的必要投资不匹配。这导致了这样的系统工作压力更大,导致电压稳定性问题。了解导致电压崩溃现象的事件一直是许多研究人员的目标,这导致了大量仿真程序的开发。选择了许多工具,以尽可能少的计算量来帮助确定最弱的系统总线,以便在寻找预防措施以提高系统电压稳定水平方面能够快速响应。从这个意义上说,特征向量和切向量是非常有用的信息源。这两个要素结合在一起,可以确定对系统稳定性影响最大的关键总线和发电机。这些分析将允许操作员决定在哪些变量上工作,以避免电压崩溃。
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