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Design and Implementation of a Fast Dynamic Control Scheme for Capacitor-Supported Dynamic Voltage Restorers

机译:电容器支持的动态电压恢复器快速动态控制方案的设计与实现

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This paper presents a fast dynamic control scheme for capacitor-supported single-phase dynamic voltage restorers (DVRs) for inductive loads. The scheme consists of two main control loops as inner and outer loops. The inner loop is used to dictate the gate signals for the switches in the DVR. It is based on the boundary control method with the second-order switching surface. The load voltage can ideally be reverted to the steady state in two switching actions during a supply voltage dip. The outer loop is used to generate the DVR output reference for the inner loop. It has three control modes for achieving two different functions, including the output regulation and output restoration. The first mode is for regulating the capacitor voltage on the dc side of the inverter, so that the output of the DVR is regulated at the nominal voltage. The second mode is for restoring the output with the near minimum energy injection by the DVR during a voltage dip. The third mode is in maximum voltage injection and will be activated when the capacitor voltage is reduced to a level that starts distorting the output voltage in the second mode. The mode boundaries will be derived in this paper. By studying the small-signal characteristics of the control loops, a set of design procedures will be derived. A 500 VA, 110 V, 60 Hz prototype has been built and tested with nonlinear inductive loads. The dynamic behaviors of the prototype under different voltage dip depths will be investigated.
机译:本文提出了一种用于电感负载的电容器支持的单相动态电压恢复器(DVR)的快速动态控制方案。该方案由两个主控制回路组成,分别是内部回路和外部回路。内部环路用于指示DVR中开关的门信号。它基于具有二阶开关面的边界控制方法。理想情况下,在电源电压骤降期间,可以通过两个开关动作将负载电压恢复到稳态。外循环用于为内循环生成DVR输出参考。它具有三种控制模式,可实现两种不同的功能,包括输出调节和输出恢复。第一种模式是调节逆变器直流侧的电容器电压,以便DVR的输出调节为标称电压。第二种模式是在电压骤降期间通过DVR以接近最小的能量注入来恢复输出。第三模式处于最大电压注入,当第二模式下电容器电压降低到开始使输出电压失真的水平时,第三模式将被激活。模式边界将在本文中得出。通过研究控制回路的小信号特性,将得出一组设计程序。已构建了一个500 VA,110 V,60 Hz的原型,并在非线性感性负载下进行了测试。将研究原型在不同电压骤降深度下的动态行为。

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