JAYA优化2DOF-IDD控制策略在混合动力系统AGC中的优越性

Srikanta Mohapatra, P. Sahu, Ramchandra Agrawal, R. Prusty, Nimai Charan Patel
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引用次数: 4

摘要

本文对多区域电力系统的自动发电控制(AGC)进行了较好的研究。为了获得动态负载下的AGC,作者提出了一种面向自由度的积分双导数控制器。所提出的2DOF-IDD控制器的自由度特性优雅地提高了在任何干扰下的整体性能。提出了一种多目标JAYA算法来优化设计不同功能条件下的2DOF-IDD控制器。通过2DOF-PID和2DOF-PI控制方法的标准对比研究,研究了所提出的2DOF-IDD控制器的性能。将JAYA算法与花授粉算法(FPA)、布谷鸟搜索算法(CSA)和遗传算法(GA)的动态性能进行了比较。在优化2DOF-IDD控制器参数时,考虑了改进的时间乘绝对误差积分(ITAE)目标函数。为了提高系统的整体额定值,采用现有的常规系统对集成风力电站的电力系统进行建模。最后,通过各种仿真结果推断,基于JAYA算法的2DOF-IDD控制器对于混合动力系统的AGC具有更好的控制效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Superiority of JAYA Optimized 2DOF-IDD control strategy for AGC of hybrid power system
The research work on automatic generation control (AGC) of a multi area power system has been well addressed in this article. In order to obtain AGC under dynamic load, the authors have proposed a degree of freedom oriented integral and double derivative controller. The degree of freedom nature of proposed 2DOF-IDD controller gracefully improves the overall performances under any disturbances. A multi objective JAYA algorithm has been suggested to optimally design the proposed 2DOF-IDD controller under different functional conditions. The performance of proposed 2DOF-IDD controller has been investigated through a standard comparative study over 2DOF-PID and 2DOF-PI control control approach for generation control of the proposed plant under study. The dynamic performance of suggested JAYA algorithm has been compared over flower pollination algorithm (FPA), cuckoo search algorithm (CSA) and genetic algorithm (GA). An improved objective function called integral of time multiplied by absolute error (ITAE) has been considered while optimizing parameters of proposed 2DOF-IDD controller. The proposed power system integrated with the wind power station is modeled with existing conventional system for improving overall rating of the system. Finally, it is inferred from various simulated results that suggested JAYA algorithm based 2DOF-IDD controller is better in regard to AGC of hybrid power system.
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