Stabilizing multimachine power systems with fuzzy logic using artificial bee colonies

被引:0
|
作者
Hamanah W.M. [1 ]
Baraean A. [2 ]
Hussein A. [1 ,2 ]
Abido M.A. [1 ,2 ,3 ]
机构
[1] Interdisciplinary Research Center of Renewable Energy and Power Systems, (IRC-REPS), Research Institute, Dhahran
[2] Department of Electrical Engineering, College of Engineering and Physics, Dhahran
[3] K.A.CARE Energy Research & Innovation Center, King Fahd University for Petroleum and Minerals, Dhahran
关键词
Artificial Bee Colony (ABC); Fuzzy Logic Power System Stabilizer (FLPSS); Power System Transient Stability;
D O I
10.24084/repqj21.258
中图分类号
学科分类号
摘要
Over the past few years, fuzzy logic systems have gained popularity due to their superiority over classical controllers when it comes to enhancing the transient stability of power systems. In this paper, a Fuzzy Logic Power System Stabilizer (FLPSS) is designed to damp local and inter-area oscillations following disturbances through the use of an Artificial Bee Colony Optimization Algorithm (ABC). The designed FLPSS is expected to significantly increase the robustness of power systems and ultimately improve the quality of power supply to end-users. This test system consists of two areas with four machines and eleven buses, with the purpose of evaluating the performance of the ABC-FLPSS under a variety of disturbances and loads. In order to optimize the scaling factors of FLPSSs, the Integral Squared Error (ISE) of rotor speed deviation is formulated as an objective function. Evaluation of the proposed controller involves simulating the test system under different conditions. These conditions range from small perturbations, such as changes in one of the system parameters, to large changes, such as removing a main transmission line, to determine its effectiveness. A comparison of ABC-FLPSS with FLPSS and Conventional Power System Stabilizer (CPSS) shows that the ABC-FLPSS controller is superior to FLPSS and CPSS. © 2023, European Association for the Development of Renewable Energy, Environment and Power Quality (EA4EPQ). All rights reserved.
引用
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页码:166 / 171
页数:5
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