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Optimum design of PID controller in AVR system using intelligent methods

机译:智能方法在AVR系统中PID控制器的优化设计。

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In this paper optimal design of Proportional-Integral-Derivative (PID) controller parameters in an Automatic Voltage Regulator (AVR) system has been considered. In many articles, transfer function of the AVR system has considered being linear, but in this work we applied amplifier limitation block to consider nonlinear conditions. In this way, we would have more realistic results. In literatures, different criteria have been proposed for evaluating the performance of control systems. In this study, two performance criteria that mostly used in evaluating performance of the PID controller are employed to the proposed AVR system. By comparing the step responses of the two criteria, one of them is chosen as the best criterion for performance evaluation of the PID controller in non-linear conditions. Two optimization algorithms namely Shuffled Frog Leaping (SFL) and Particle Swarm Optimization (PSO) are applied for determining the optimal PID controller parameters in an AVR system with respect to minimizing the chosen criterion. Finally, the performance and the robustness considerations have been involved in order to show the stability and efficiency of the system.
机译:在本文中,已经考虑了自动电压调节器(AVR)系统中比例积分微分(PID)控制器参数的最佳设计。在许多文章中,AVR系统的传递函数都被认为是线性的,但是在这项工作中,我们应用了放大器限制模块来考虑非线性条件。这样,我们将获得更现实的结果。在文献中,已经提出了用于评估控制系统性能的不同标准。在这项研究中,两个主要用于评估PID控制器性能的性能标准被用于所提出的AVR系统。通过比较两个标准的阶跃响应,可以选择其中一个作为非线性条件下PID控制器性能评估的最佳标准。两种优化算法,分别是改组蛙跳(SFL)和粒子群优化(PSO),可用于确定AVR系统中相对于最小化所选标准的最佳PID控制器参数。最后,为了显示系统的稳定性和效率,还考虑了性能和鲁棒性。

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