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首页> 外文期刊>International Transaction of Electrical and Computer Engineers System >Optimal Design and Comparative Analysis of FOPID Controller for Three Area LFC Tuned Using EHO and GCMBO Algorithms
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Optimal Design and Comparative Analysis of FOPID Controller for Three Area LFC Tuned Using EHO and GCMBO Algorithms

机译:EHO和GCMBO算法调整的三区LFC FOPID控制器的优化设计与比较分析。

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In this paper, signified a novel method to strategy of FOPID controller for LFC of a three area generating units. In this system, LFC of generating units of power plants has been used in frequency control due to having the better responses. The EHO and GCMBO are also considered using the parameters of FOPID controllers as a minimization of error in this optimization technique. The Integral Squared Error (ISE) is the objective function for optimum strategy of FOPID parameters of the EHO and GCMBO technique. Its gives the better dynamic response as compared the other FOPID controller parameters. The modal of generating units power plant with FOPID controller is simulated in MATLAB/SIMULINK platform. In this study, simulation explorations on a three-area LFC with different generating units. The effectiveness of the proposed methodology is better in terms of settling time, rise time, and peak time. The perturbation in load, change the system frequency which further increase the Undershoot of the system here, the undershoot of the system is decrease for EHO and GCMBO technique is used to tuned the parametric value of FOPID controller.
机译:本文提出了一种用于三区域发电机组LFC的FOPID控制器策略的新方法。在该系统中,由于具有更好的响应,发电厂的发电机组的LFC已用于频率控制。在此优化技术中,还使用FOPID控制器的参数来考虑EHO和GCMBO。积分平方误差(ISE)是EHO和GCMBO技术的FOPID参数最佳策略的目标函数。与其他FOPID控制器参数相比,它具有更好的动态响应。在MATLAB / SIMULINK平台上模拟了带有FOPID控制器的发电机组的模态。在这项研究中,对具有不同发电机组的三区域LFC进行了仿真探索。在建立时间,上升时间和峰值时间方面,所提出方法的有效性更好。负载的扰动,改变系统的频率,在这里进一步增加了系统的下冲量,对于EHO来说,系统的下冲量减小了,GCMBO技术用于调整FOPID控制器的参数值。

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