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A comparative study of LQR, LQG, and integral LQG controller for frequency control of interconnected smart grid

机译:用于互联智能电网频率控制的LQR,LQG和集成LQG控制器的比较研究

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Renewable energy plays the vital role to increase the power generation of smart grid. A smart grid consists of smart meters, smart appliances, energy efficient resources and renewable energy resources. The integration of renewable energy in a smart grid is challenging because of its frequency fluctuation in the power grid. The Plug-in hybrid electric vehicles (PHEV) are expected to install in customer side. The PHEV can be applied to stabilize the power and frequency fluctuation. This paper shows a comparative study of Linear Quadratic Regulator (LQR), Linear Gaussian Control (LQG) and Integral Linear Quadratic Gaussian Controller (ILQG) to control the frequency of interconnected power systems. In order to maintain the frequency stabilization, the three controllers are developed in this paper. The performance of these controllers is presented using Matlab simulation. The simulation results show that the integral linear quadratic gaussian controller provides best as compared to LQR and LQG controller.
机译:可再生能源在增加智能电网发电方面起着至关重要的作用。智能电网包括智能电表,智能电器,节能资源和可再生能源。由于可再生能源在电网中的频率波动,将其整合到智能电网中具有挑战性。插电式混合动力汽车(PHEV)预计将安装在客户方。 PHEV可用于稳定功率和频率波动。本文对线性二次调节器(LQR),线性高斯控制(LQG)和积分线性二次高斯控制器(ILQG)进行比较研究,以控制互连电力系统的频率。为了保持频率稳定,本文开发了三个控制器。这些控制器的性能通过Matlab仿真来显示。仿真结果表明,与LQR和LQG控制器相比,积分线性二次高斯控制器提供了最佳性能。

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