基于蜜獾算法的双区电力系统负载频率PID整定

Cenk Andic, Sercan Ozumcan, A. Ozturk, B. Turkay
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引用次数: 1

摘要

本文提出了一种利用元启发式方法确定PID控制器增益的负载频率控制方法。本研究提出了一种新的元启发式方法——蜜獾算法来寻找PID控制器的最优Kp、Ki和Kd参数。在两区电力系统中对该算法进行了测试。然而,作为电能存储装置之一的电动汽车电池已被添加到两区电力系统中。研究了负载扰动对频率稳定时间的影响。最后,对传统方法、遗传算法和Ziegler-Nichols方法以及蜜獾算法进行了比较。结果表明,该算法在阶跃载荷扰动下具有快速阻尼稳态偏差频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Honey Badger Algorithm Based Tuning of PID Conroller for Load Frequency Control in Two-Area Power System Including Electric Vehicle Battery
This paper presents a load frequency control using meta-heuristic method to find the gains of PID controllers. In this study, a novel meta-heuristic method, Honey Badger Algorithm is proposed to find the optimal Kp, Ki and Kd parameters of PID controller. The proposed algorithm is tested on two-area power system. However, electric vehicle battery, which is one of the electrical energy storage devices, has been added to the two-area power system. The settling time of the frequency has been investigated as a result of the load disturbance. Finally, a comparison was made between the traditional methods, Genetic Algorithm and Ziegler-Nichols method, and Honey Badger Algorithm. Upon comparison of the results, it is revealed that the proposed algorithm shows fast-damping steady-state deviations frequency with presence of step load disturbance.
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