Integrated Voltage and Generator Stability Analysis of a Three Bus System Combining SMIB and SMLB Systems

Venu Yarlagadda, J. Rao, Giriprasad Ambati, S. K. Karthik Kumar, K. Rajesh
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引用次数: 1

Abstract

The Power System stability plays an extraordinary role in system security and reliability of power grid, and is broadly classified into Generator Stability and Voltage Stability. These two stability issues are can’t be separated with each other and one is interdepends on the other. The main objective of the article is to analyze both of these problems simultaneously with the development of a Three Bus System by integrating both these stability problems. The three bus test system is formed with Single Machine Infinite Bus (SMIB) System with that of the Single Machine Load Bus (SMLB) systems. The SMLB system used to study the absolute voltage stability alone whereas SMIB System is resembles the Generator Stability problem. The Simulink Model is developed for the three bus test system to evaluate the integrated angle and voltage stability analysis. The voltage stability can be assessed using pv and qv curves and angle stability is analyzed with power angle curves. Static Var Compensator (SVC) is used to improve the power system stability. The test system performance is evaluated and compared without and with Static Shunt Compensator.
SMIB系统和SMLB系统相结合的三母线系统的电压和发电机稳定性分析
电力系统稳定对电网系统的安全可靠起着举足轻重的作用,大致分为发电机稳定和电压稳定两大类。这两个稳定性问题是不可分割的,是相互依存的。本文的主要目的是通过整合这两个稳定性问题来同时分析这两个问题以及三总线系统的发展。三母线测试系统由单机无限母线(SMIB)系统和单机负载母线(SMLB)系统组成。SMLB系统用于单独研究绝对电压稳定性,而SMIB系统则类似于发电机稳定性问题。开发了三母线测试系统的Simulink模型,对综合角度和电压稳定性分析进行了评估。用pv和qv曲线评价电压稳定性,用功率角曲线分析角度稳定性。采用静态无功补偿器(SVC)来提高电力系统的稳定性。对无静态并联补偿器和有静态并联补偿器的测试系统性能进行了评价和比较。
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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