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Power conditioning using dynamic voltage restorers under different voltage sag types

机译:在不同电压骤降类型下使用动态电压恢复器进行功率调节

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摘要

Voltage sags can be symmetrical or unsymmetrical depending on the causes of the sag. At the present time, one of the most common procedures for mitigating voltage sags is by the use of dynamic voltage restorers (DVRs). By definition, a DVR is a controlled voltage source inserted between the network and a sensitive load through a booster transformer injecting voltage into the network in order to correct any disturbance affecting a sensitive load voltage. In this paper, modelling of DVR for voltage correction using MatLab software is presented. The performance of the device under different voltage sag types is described, where the voltage sag types are introduced using the different types of short-circuit faults included in the environment of the MatLab/Simulink package. The robustness of the proposed device is evaluated using the common voltage sag indices, while taking into account voltage and current unbalance percentages, where maintaining the total harmonic distortion percentage of the load voltage within a specified range is desired. Finally, several simulation results are shown in order to highlight that the DVR is capable of effective correction of the voltage sag while minimizing the grid voltage unbalance and distortion, regardless of the fault type.
机译:电压骤降​​可以是对称的也可以是不对称的,具体取决于电压骤降的原因。当前,减轻电压骤降的最常见程序之一是使用动态电压恢复器(DVR)。根据定义,DVR是通过升压变压器插入网络和敏感负载之间的受控电压源,该升压变压器将电压注入网络,以纠正影响敏感负载电压的任何干扰。本文介绍了使用MatLab软件进行电压校正的DVR建模。描述了在不同电压骤降类型下的设备性能,其中使用了MatLab / Simulink封装环境中包括的不同类型的短路故障来引入电压骤降类型。在考虑电压和电流不平衡百分比的情况下,使用常见的电压骤降指数评估了所提出设备的耐用性,在这种情况下,需要将负载电压的总谐波失真百分比保持在指定范围内。最后,显示了几个仿真结果,以突出显示DVR能够有效校正电压骤降,同时最大程度地减小电网电压不平衡和失真,而与故障类型无关。

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