论文标题

岛状微电网的弹性次级电压控制:基于ESKBF的分布式快速终端滑动模式控制方法

Resilient Secondary Voltage Control of Islanded Microgrids: An ESKBF-Based Distributed Fast Terminal Sliding Mode Control Approach

论文作者

Ge, Pudong, Zhu, Yue, Green, Tim C., Teng, Fei

论文摘要

本文提出了一种基于扩展状态的Kalman-Bucy滤波器(ESKBF)和快速终端滑动模式(FTSM)控制的分布式二级电压控制方法,用于具有基于逆变器的分布式世代(DGS)的岛岛微网(MG)的弹性操作。为了解决多个不确定性的共存,提出了一个统一的建模框架来代表不同类型的干扰集,包括参数扰动,测量噪声和不可估量的外部变量,通过扩展状态方法。然后应用Kalman-Bucy滤波器,以准确估计扩展DG模型的状态信息。此外,基于准确的估计,具有终端吸引子的快速末端滑动模式(FTSM)表面旨在保持系统稳定性并加速共识跟踪的收敛性,从而显着改善了在正常和插入式播放操作下二级电压控制的性能。最后,在MATLAB/SIMULINK和实验测试台上进行了案例研究,以证明该方法的有效性。

This paper proposes a distributed secondary voltage control method based on extended state Kalman-Bucy filter (ESKBF) and fast terminal sliding mode (FTSM) control for the resilient operation of an islanded microgrid (MG) with inverter-based distributed generations (DGs). To tackle the co-existence of multiple uncertainties, a unified modelling framework is proposed to represent the set of different types of disturbances, including parameter perturbation, measurement noise, and immeasurably external variables, by an extended state method. Kalman-Bucy filter is then applied to accurately estimate the state information of the extended DG model. In addition, based on the accurate estimation, a fast terminal sliding mode (FTSM) surface with terminal attractors is designed to maintain the system stability and accelerate the convergence of consensus tracking, which significantly improves the performance of secondary voltage control under both normal and plug-and-play operation. Finally, case studies are conducted in both MATLAB/Simulink and an experimental testbed to demonstrate the effectiveness of the proposed method.

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