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Optimal design of a three degrees of freedom based controller for AGC of a power system with renewable energy sources

机译:具有可再生能源的电力系统AGC的基于三自由度的控制器的优化设计

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This paper articulates the automatic generation control of an intricate power system in the presence of different non-linearities. To preserve the system frequency, and tie-line power within a certain limit, it is imperative to design an expert controller for AGC to meet the delivery of quality power to the end users. In this paper, PID controllers with different degrees of freedom such as 2DOF-PID, and 3DOF-PID controllers are designed conglomerating with derivative filter to employ as secondary controllers in AGC. And their gains are evaluated by applying a nascent selfish herd optimization SHO) technique. At first, a normal load variation of 1% is injected in area-1, and the dynamic performance of 3DOF-PID controller is compared with PID, and 2DOF-PIDN controller. Along with this investigation, robustness of the proposed controller is examined against variable load, and variable solar irradiation.
机译:本文阐述了在存在不同非线性的情况下复杂电力系统的自动发电控制。为了将系统频率和线路功率保持在一定范围内,必须为AGC设计专家控制器,以满足向最终用户提供优质电源的需求。在本文中,设计了具有不同自由度的PID控制器(例如2DOF-PID和3DOF-PID控制器),并将它们与导数过滤器集成在一起,以用作AGC中的辅助控制器。通过应用新生的自私牧群优化SHO(SHO)技术评估他们的收益。首先,在区域1中注入1%的正常负载变化,然后将3DOF-PID控制器的动态性能与PID和2DOF-PIDN控制器进行比较。随着这项研究,针对可变负载和可变太阳辐射,检查了所提出控制器的鲁棒性。

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