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A novel technique to design cuckoo search based FOPID controller for AVR in power systems

机译:一种新的技术设计基于Cuckoo Search基于Fopid控制器的动力系统

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摘要

Firstly, this paper develops a robust fractional order proportional integral derivative (FOPID) controller for automatic voltage regulator (AVR) in power systems. In the proposed controller, optimum design parameters, such as, proportional, integral, derivative gains, integral and derivative constants, have been achieved by using cuckoo search (CS) algorithm. Then, the time response characteristics of AVR with and without proposed controller have been investigated to reveal the effectiveness of the proposed controller. Also, the performance of the proposed controller has been tested under the condition of the parameter uncertainty and improved performance has been revealed. Finally, the accuracy and robustness of the proposed controller has been investigated through the comparative analysis of the results, achieved from proposed and other existing controllers using the same sets of data. It is shown that the proposed controller provides the better time response characteristics than the other existing techniques. (C) 2017 Elsevier Ltd. All rights reserved.
机译:首先,本文在电力系统中开发了一种用于自动电压调节器(AVR)的稳健的分数比例积分衍生(FOPID)控制器。在所提出的控制器中,通过使用Cuckoo搜索(CS)算法,已经实现了最佳设计参数,例如比例,积分,导数增益,积分和衍生常数。然后,已经研究了具有和不提出的控制器的AVR的时间响应特性以揭示所提出的控制器的有效性。此外,已经在参数不确定性的条件下测试了所提出的控制器的性能,并揭示了改进的性能。最后,通过使用相同数据集的提议和其他现有控制器实现了所提出的控制器的准确性和稳健性。结果表明,所提出的控制器提供比其他现有技术更好的时间响应特性。 (c)2017 Elsevier Ltd.保留所有权利。

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