A Comparative Study of Robust Optimal Controllers for Grid Voltage Control in Islanded Microgrids

Sanjid-E-Elahi, M. Rahman, Md. Alamgir Hossain, M. Sikder
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引用次数: 1

Abstract

This paper presents several optimized control methods for voltage control of an islanded microgrid connected through an inverter system. The control methodology of the microgrid is based on converter control using the PWM. Optimal controllers such as Linear Quadratic Regulator (LQR), Linear Quadratic Integrator (LQI) and Linear Quadratic Gaussian (LQG) are developed to control the voltage of converters. A robust optimal controller provides fast dynamic response and is capable of resisting voltage fluctuations from instantaneous reference grid voltage; to control the inverter voltage that can be utilized in a microgrid (MG). The proposed control strategies basically allow the MG to be controlled with minimum control input while impeding voltage deviation from a reference voltage during disturbances in the power system, such as sudden load change. The performance of designed controllers has been compared against linear and non-linear loads with several conditions. The studied systems are modeled and simulated in the MATLAB/SIMULINK environment and the comparison results show that both LQI and LQG controllers provide good tracking and reasonable performance.
孤岛微电网电压鲁棒最优控制器的比较研究
本文提出了几种通过逆变器系统连接的孤岛微电网的电压优化控制方法。微电网的控制方法是基于PWM的变换器控制。提出了线性二次调节器(LQR)、线性二次积分器(LQI)和线性二次高斯(LQG)等最优控制器来控制变换器的电压。鲁棒最优控制器提供了快速的动态响应,并能够抵抗瞬时参考电网电压的波动;以控制可用于微电网(MG)的逆变器电压。所提出的控制策略基本上允许以最小的控制输入控制MG,同时在电力系统的扰动(如负载突然变化)中阻止电压偏离参考电压。在几种条件下,比较了所设计的控制器在线性和非线性负载下的性能。在MATLAB/SIMULINK环境下对所研究的系统进行了建模和仿真,对比结果表明LQI和LQG控制器都具有良好的跟踪性能和合理的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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