Optimization of power system controller parameters using Eigen value sensitivity and linear programming

H. Hassan, M. El-Metwally, A. El-Emary, H. Fakhry, F. Chaaban
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引用次数: 3

Abstract

This paper presents a modified technique for the tuning of power system controller parameters in order to improve the power quality and dynamic stability of the system. The technique uses symbolic Eigen value sensitivity analysis and linear programming approach to determine the optimum value of controller parameters in the system. The main objective function aims to shift critical Eigen values to the left of the imaginary axis in the s-plane, as far as possible. The proposed method presents new constraints including a new formula for convergence and a controlling parameter to reduce the effect of numerical approximation resulting from the linearization of the objective function. Proper selection of the most effective parameters to be tuned is also performed. The proposed technique is general, effective and simple to apply using the developed MATLAB-SIMULINK software program which has a friendly user interface. A case study is considered which is a single synchronous machine connected to an infinite bus-bar through a transmission line equipped with a Power System Stabilizer (PSS). Simulation results verify the validity of the proposed technique in enhancing system stability.
基于特征值灵敏度和线性规划的电力系统控制器参数优化
本文提出了一种改进的电力系统控制器参数整定技术,以改善电力系统的电能质量和动态稳定性。该技术采用符号特征值灵敏度分析和线性规划方法确定系统中控制器参数的最优值。主要目标函数旨在将临界特征值尽可能地移到s平面虚轴的左侧。该方法提出了新的约束条件,包括新的收敛公式和控制参数,以减少目标函数线性化引起的数值逼近的影响。适当选择最有效的参数进行调优。利用开发的MATLAB-SIMULINK软件程序,该技术具有通用性、有效性和简单性,具有友好的用户界面。考虑了一个案例研究,这是一个单一的同步机连接到无限母线通过传输线配备电力系统稳定器(PSS)。仿真结果验证了该方法在提高系统稳定性方面的有效性。
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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