Design of PID controller based power system stabilizer using Modified Philip-Heffron's model: An artificial bee colony approach

B. Theja, A. Rajasekhar, D. Kothari, Swagatam Das
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引用次数: 15

Abstract

In this paper an optimally designed PID controller equipped with Power System Stabilizer (PSS) for a Single Machine Infinite Bus (SMIB) system using linearized Modified Philip-Heffron's model is presented. The PSS design based on this model utilizes signals available within the generating station and doesn't require the knowledge about external system parameters like line impedance and infinite bus voltage. A new swarm intelligent Artificial Bee Colony (ABC) algorithm has been used to tune the PSS-PID parameters to enhance the small signal stability due to small variations in generation and loads. Various simulation results and comparisons over different loading conditions on a single machine infinite bus power system using ABC tuned PID-PSS show the superiority of ABC in designing the power system stabilizer for the model considered.
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基于改进Philip-Heffron模型的PID控制器电力系统稳定器设计:一种人工蜂群方法
本文采用线性化修正Philip-Heffron模型,对单机无限总线系统进行了带电力系统稳定器(PSS)的PID控制器优化设计。基于该模型的PSS设计利用了电站内部可用的信号,不需要了解线路阻抗和无限母线电压等外部系统参数。采用一种新的群智能人工蜂群(ABC)算法对PSS-PID参数进行整定,以提高发电和负荷小变化时的小信号稳定性。利用ABC调谐PID-PSS对单机无限母线电力系统在不同负载条件下的各种仿真结果和比较表明,ABC在设计所考虑模型的电力系统稳定器方面具有优越性。
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