Load flow based voltage stability indices to analyze voltage stability and voltage security of the power system

A. S. Telang, P. Bedekar
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引用次数: 9

Abstract

Voltage Stability and Voltage Security are considered as important concerns in power system planning and operation. To provide reliable, secure and stable electrical power to the customers, is the main task of power system engineer. To meet these requirements simultaneously, the power system is to be operated closer to its stability limits which cause more stress on the power system. Therefore, a study that determines the maximum power transfer capability of the power system before voltage collapse must be carried out in the voltage secured environment. This paper presents the evaluation of some of load flow based static voltage stability indices which are found during the literature survey to present reliable information about the closeness of the power system to voltage collapse. The comparison of these indices is presented here and their effectiveness has been tested on various standard IEEE busbar test systems using several different scenarios of load increase. The results of standard IEEE14 busbar test system have been demonstrated specifically. The novelty of the work presented here lies in the method of load increase scenario using a special code written in MATLAB environment. Furthermore, a novel idea of the use of line voltage stability indices to predict voltage collapse within the framework of a voltage security is presented in this paper.
基于负荷潮流的电压稳定指标分析电力系统的电压稳定性和电压安全性
电压稳定和电压安全是电力系统规划和运行中的重要问题。为用户提供可靠、安全、稳定的电力,是电力系统工程师的主要任务。为了同时满足这些要求,电力系统必须在其稳定极限附近运行,这对电力系统造成了更大的压力。因此,必须在电压安全的环境下,研究确定电压崩溃前电力系统的最大功率传输能力。本文介绍了在文献调查中发现的一些基于负荷潮流的静态电压稳定指标的评价,这些指标提供了关于电力系统电压崩溃接近程度的可靠信息。本文给出了这些指标的比较,并在各种标准IEEE母线测试系统上使用几种不同的负载增加方案测试了它们的有效性。对标准IEEE14母线测试系统的测试结果进行了具体论证。本文工作的新颖之处在于使用在MATLAB环境中编写的特殊代码来实现负载增加场景。此外,本文还提出了在电压安全框架内利用线路电压稳定指标预测电压崩溃的新思路。
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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