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首页> 外文期刊>European transactions on electrical power engineering >Equilibrium optimizer tuned novel FOPID-DN controller for automatic voltage regulator system
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Equilibrium optimizer tuned novel FOPID-DN controller for automatic voltage regulator system

机译:均衡优化器调谐新型FOPID-DN控制器,用于自动稳压系统

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This paper presents a novel fractional-order PID plus derivative with filter coefficient (FOPID-DN) controller for automatic voltage regulator (AVR) system using the MATLAB/Simulink environment. An AVR system is employed in the power system to maintain the terminal voltage at the desired level. Parameters of the proposed FOPID-DN controller are optimally tuned by the recently developed Equilibrium Optimizer (EO) algorithm. Performance of the designed FOPID-DN controller for an AVR system is compared with various controllers which are optimally tuned by different optimization algorithms. Comparative transient response analysis of the proposed technique has been carried out by considering vital transient response indicators like maximum overshoot, rise time, and settling time. Performance analysis of the proposed technique for an AVR system has been done by considering several input conditions. Robustness analysis of the EO algorithm tuned FOPID-DN controller has been performed by varying the time constants of different components in an AVR system. The capability of the FOPID-DN controller to handle nonlinearities of an AVR system has been investigated. The stability of the FOPID-DN controlled AVR system has been analyzed. In addition, the disturbance rejection capability of the FOPID-DN controlled AVR system has also been investigated. From the various simulation results obtained using the MATLAB/Simulink environment, it has been observed that the proposed FOPID-DN-based AVR system provided better performance as compared to different existing controllers.
机译:本文提出了一种新颖的分数级PID PLUS衍生物,用于使用MATLAB / Simulink环境的自动电压调节器(AVR)系统的过滤器系数(FOPID-DN)控制器。电力系统中采用AVR系统以保持所需水平的终端电压。所提出的FOPID-DN控制器的参数由最近开发的平衡优化器(EO)算法进行了最佳调整。与AVR系统的设计FoPID-DN控制器的性能与各种控制器进行比较,这些控制器通过不同的优化算法进行了最佳调整。通过考虑最大过冲,上升时间和稳定时间,通过考虑重要的瞬态响应指标来进行所提出的技术的比较瞬态响应分析。通过考虑若干输入条件,已经完成了AVR系统的提出技术的性能分析。通过改变AVR系统中不同组件的时间常数来执行EO算法调谐的FOPID-DN控制器的鲁棒性分析。研究了FoPID-DN控制器的能力,用于处理AVR系统的非线性。已经分析了FoPID-DN控制的AVR系统的稳定性。此外,还研究了FoPID-DN控制的AVR系统的扰动抑制能力。从使用MATLAB / SIMULINK环境获得的各种仿真结果,已经观察到所提出的基于FOPID-DN的AVR系统提供了与不同现有控制器相比的更好的性能。

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