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Model Predictive Control Framework Design for Frequency Regulation of PHEVs Participating in Interconnected Smart Grid

机译:用于参与互联智能电网的PHEV频率调节的模型预测控制框架设计

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This paper presents the design of discrete time model predictive controller (MPC) for frequency regulation of multi-area interconnected smart grid. The design of the controller is done for multi area tie-in smart grid populated with PHEVs. The controller is designed based on discrete values function which can ensure high performance of frequency regulation of smart grid. The aim of designing the controller is to stabilize frequency fluctuation in a nominal range. The robustness is tested by considering different load and uncertainties. The performance is evaluated by using Matlab Simulink. The simulation results show that the proposed controller ensures high tracking performance for frequency stabilization of smart grid.
机译:本文介绍了用于多区域互连智能电网的频率调节的离散时间模型预测控制器(MPC)的设计。控制器的设计是为使用PHEV填充的多区域串联智能电网进行的。控制器基于离散值功能设计,可以确保智能电网的频率调节高性能。设计控制器的目的是稳定标称范围内的频率波动。通过考虑不同的负载和不确定性来测试鲁棒性。使用MATLAB Simulink评估性能。仿真结果表明,所提出的控制器可确保智能电网频率稳定的高跟踪性能。

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