三相动态电压恢复器的自适应重复控制器

J. Roldán-Pérez, A. García-Cerrada, J. L. Zamora-Macho, P. Roncero-Sánchez, E. Acha
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引用次数: 10

摘要

电力系统中的电压跌落和电压膨胀、电压谐波和电压不平衡可能会影响敏感负载,导致生产中断或设备损坏。目前,利用电力电子器件进行串联电压补偿是解决这些问题的一种很有前途的方法,这类器件的设计、控制和应用已经引起了文献的广泛关注。动态电压恢复(DVR)的综合控制器已经被提出来同时解决所有这些问题,尽管有几个方面需要进一步关注。本文讨论了控制三相DVR的离散算法的几个实现问题。控制器分为主控制器和辅助控制器。前者基于状态反馈控制器,在电压跌落时实现快速瞬态响应。后者使用重复控制器来改进稳态参考跟踪和抗干扰,以解决谐波和不平衡问题。本文重点研究了重复控制器部分。首先,提出了一种提高重复控制器在网格中频率偏差小的性能的新方法。其次,对传统的重复控制器进行了改进,提高了对非周期扰动的响应能力。最后,利用SIMULINK及其PowerSim工具箱搭建的测试系统进行了仿真,说明了本文的主要贡献。
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Adaptive repetitive controller for a three-phase Dynamic Voltage Restorer
Voltage sags and swells, voltage harmonics and voltage imbalances in power systems may affect sensitive loads causing production interruption or equipment damage. Now-a-days series voltage compensation using power electronics devices is a promising solution for these problems and the design, control and application of this type of devices have drawn much attention in the literature. Comprehensive controllers for Dynamic Voltage Restores (DVR's) have already been proposed to tackle all those problems simultaneously, although several aspects need closer attention. This paper addresses several implementation issues for a discrete algorithm to control a three phase DVR. The controller is divided into a main one and an auxiliary one. The former is based on a state-feedback controller to achieve a fast transient response when voltage sags occur. The latter uses a repetitive controller to improve steady-state reference tracking and disturbance rejection in order to tackle harmonic and imbalance problems. This paper focuses on the repetitive-controller part. Firstly, a new method to improve the repetitive controller performance with small frequency deviations in the grid is presented. Secondly, the classical repetitive controller is modified so that the response to non-periodic disturbances is improved. Finally, the main contributions of the paper are illustrated by simulation using a test system built with SIMULINK and its PowerSim toolbox.
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