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Optimal design of PD-Fuzzy-PID cascaded controller for automatic generation control

机译:用于自动发电控制的PD-Fuzzy-PID级联控制器的优化设计

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In this research paper a novel cascaded PD-Fuzzy-PID controller is recommended for a conventional hybrid-source unified power system for automatic generation control. The optimization of scaling parameters of the suggested PD-Fuzzy-PID controller is done by hybrid Grey Wolf Optimization-Teaching Learning Based Optimization (GWO-TLBO) technique. A sudden disturbance of 0.01 p.u. is considered in area 1 and ITAE is taken as the evaluative function in the recommended optimization process. The proposed work considers three different sources of generating systems namely, a hydro, a gas and a reheat thermal unit. Both AC tie-line and AC-DC tie-line is considered in analyzing the dynamic performances of the system. The robustness and sensitiveness of the proposed controller are further put to test for random load variations and nominal parameter variations. Analysis of the dynamic characteristics of the system is executed considering a number of time response specifications like settling time, peak overshoots and undershoots. During the analysis the optimum specifications obtained by the recommended technique are compared with some pre-published results in order to prove the supremacy of this novel controller over existing controllers. Further, the frequency stability of the system is improved by employing an UPFC in the system.
机译:在这篇研究论文中,推荐将一种新颖的级联PD-Fuzzy-PID控制器用于常规的混合源统一电力系统,以进行自动发电控制。建议的PD-Fuzzy-PID控制器的缩放参数的优化是通过混合灰狼优化-基于学习学习的优化(GWO-TLBO)技术完成的。突然扰动0.01 p.u.在区域1中被考虑,在建议的优化过程中将ITAE作为评估功能。拟议的工作考虑了发电系统的三种不同来源,即水力,天然气和再热热机组。在分析系统的动态性能时,考虑了交流联络线和交流-直流联络线。所提出的控制器的鲁棒性和灵敏性将进一步测试随机负载变化和标称参数变化。考虑到许多时间响应指标(例如建立时间,峰值过冲和下冲),对系统的动态特性进行分析。在分析过程中,将通过推荐技术获得的最佳规格与一些预先发布的结果进行了比较,以证明这种新型控制器优于现有控制器。此外,通过在系统中采用UPFC来改善系统的频率稳定性。

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