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Design of PID controller using multi-objective genetic algorithm for load frequency control in interconnected power systems

机译:基于多目标遗传算法的互联电力系统负荷频率PID控制器设计

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摘要

This paper proposes an evolutionary multi-objective optimization approach for load frequency control in interconnected power systems. The design purpose is to improve the dynamic response of an interconnected power system after load demand changes. A genetic algorithm (GA)-based solution technique is applied to generate a Pareto set of global optimal solutions to the given multi-objective optimization problem. In addition, the best compromise solution from the obtained Pareto solution set is selected by a fuzzy-based membership value assignment method. Simulation results are presented and compared with conventional GA-PID controller and another new controller. All the simulations show the successful performance of proposed approach in controlling the frequency of the power system.
机译:本文提出了一种用于电力系统负荷频率控制的进化多目标优化方法。设计目的是在负载需求变化后改善互连电源系统的动态响应。基于遗传算法(GA)的求解技术被应用于为给定的多目标优化问题生成Pareto全局最优解集。另外,通过基于模糊的隶属度值分配方法从获得的帕累托解集中选择最佳折衷解。给出了仿真结果,并将其与常规GA-PID控制器和另一个新控制器进行了比较。所有仿真结果都表明该方法在控制电力系统频率方面具有成功的性能。

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