Backstepping fractional terminal sliding mode voltage control of an islanded microgrid

H. Delavari, S. Naderian
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引用次数: 8

Abstract

Distribution networks include thousands of sensors and a large number of controllable devices such as flexible loads, batteries and distributed generators with an arbitrary configuration that can be parametrically uncertain or topologically unknown. In this paper a new nonlinear voltage control strategy based on backstepping and fractional order sliding mode control is presented for an islanded microgrid. Primary objective in this paper is to improve robust performance and disturbance rejection of the closed loop control system hence a backstepping fractional order terminal sliding mode control (FBTSMC) is proposed here. The proposed controller robustly regulates the microgrid voltages in the presence of parametric uncertainties, unmodeled dynamics, imbalanced loads and nonlinear loads with harmonic. Finally, the performance of the proposed technique is investigated under disturbance in an islanded micro grid. An in-depth comparative study is done to highlight the merits of the proposed controller. Simulation results revealed that the Total Harmonic Distortion (THD) and the steady-state error of output voltage are successfully decreased and the dynamic performances and the capability of perturbation rejection are efficiently improved.
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孤岛微电网的反步分数端滑模电压控制
配电网络包括数千个传感器和大量可控设备,如柔性负载、电池和具有任意配置的分布式发电机,这些配置可能是参数不确定或拓扑未知的。针对孤岛微电网,提出了一种基于反步和分数阶滑模控制的非线性电压控制策略。为了提高闭环控制系统的鲁棒性和抗扰性,本文提出了一种反步分数阶末端滑模控制(FBTSMC)。该控制器对存在参数不确定性、未建模动力学、负载不平衡和谐波非线性的微电网电压进行鲁棒调节。最后,研究了孤岛微电网扰动下该方法的性能。为了突出所提出控制器的优点,进行了深入的比较研究。仿真结果表明,该方法成功地降低了输出电压的总谐波失真(THD)和稳态误差,有效地提高了系统的动态性能和抗扰能力。
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