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Effect of parameter tuning of differential evolution on PID controller for automatic generation control of a hybrid power system in deregulated environment

机译:失调环境下混合动力系统发电自动控制的微分进化参数整定对PID控制器的影响

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Differential evolution (DE) is one of the most powerful evolutionary algorithm that has been extensively used by various researchers for global optimization of complex engineering problems. Selection of algorithm control parameter plays a vital role in the efficient performance of differential evolution algorithm. However, choice of control parameters for optimum performance varies from problem to problem. In this work a parametric study of differential evolution tuned PID controller for automatic generation control of a restructured hybrid power system is presented. Gain parameters of PID controller Kp, Ki, Kd are tuned by Integral Square Error (ISE) control strategy. Analysis of results obtained shows that improper choice of control parameters considerably hampers the performance of the algorithm. MATLAB/SIMULINK platform is used for modeling and simulating the test system.
机译:差分进化(DE)是最强大的进化算法之一,已被各种研究人员广泛用于复杂工程问题的全局优化。算法控制参数的选择在差分进化算法的有效性能中起着至关重要的作用。但是,为获得最佳性能而选择的控制参数因问题而异。在这项工作中,提出了一种用于重组混合动力系统自动发电控制的差分进化调整PID控制器的参数研究。 PID控制器Kp,Ki,Kd的增益参数通过积分平方误差(ISE)控制策略进行调整。对获得的结果的分析表明,控制参数选择不当会严重影响算法的性能。 MATLAB / SIMULINK平台用于对测试系统进行建模和仿真。

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