Robust Control of a Microgrid System Under Real Parameter Variations

S. Kolla, Md Samiul Mohsin
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Abstract

The importance of microgrids in power systems is increasing rapidly due to their advantages. In a microgrid system, voltage source converters are used to integrate renewable energy sources that have intermittent nature. These systems require better control methods to improve performance when the parameters of the system change. This paper presents a robust control method for the voltage source converter connected in a microgrid in continuous-time system model by using the linear quadratic regulator method. Robust stability bound measures based on the Lyapunov stability and time-invariant methods are introduced to ensure the stability of the converter based microgrid system if parameter uncertainties occur. These robust stability measures are used to design robust controller for the microgrid system. It is previously shown that the time-invariant robust stability methods give better results than the Lyapunov stability method. However, the Lyapunov stability method for a dependent uncertainty is found to give better results in this paper than the time-invariant method for the microgrid system. The eigenvalues of the closed-loop system designed by using the linear quadratic regulator, with perturbations that meet the stability conditions, have negative real parts making the system stable. MATLAB implementation of the proposed robust control method for microgrid system provided effective results by giving stable initial condition responses for the closed-loop system with perturbations.
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微电网系统实参数变化下的鲁棒控制
由于微电网的优势,其在电力系统中的重要性正在迅速增加。在微电网系统中,电压源变流器用于集成具有间歇性的可再生能源。当系统参数发生变化时,这些系统需要更好的控制方法来提高性能。本文提出了一种基于线性二次型调节器的连续时间系统模型中接入微电网电压源变换器的鲁棒控制方法。引入了基于李雅普诺夫稳定性和时不变方法的鲁棒稳定界措施,以保证变换器微网系统在参数不确定时的稳定性。利用这些鲁棒稳定性测度来设计微电网系统的鲁棒控制器。以往的研究表明,定常鲁棒稳定性方法比Lyapunov稳定性方法具有更好的结果。然而,对于相关不确定性,本文发现Lyapunov稳定性方法比定常方法对微电网系统给出了更好的结果。采用线性二次型调节器设计的闭环系统,在满足稳定条件的扰动下,其特征值具有负实部,使得系统稳定。本文提出的鲁棒控制方法在微电网系统的MATLAB实现中得到了有效的结果,对具有摄动的闭环系统给出了稳定的初始条件响应。
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