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An Enhanced Voltage Sag Compensation Scheme for Dynamic Voltage Restorer

机译:动态电压恢复器的增强型电压暂降补偿方案

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摘要

This paper deals with improving the voltage quality of sensitive loads from voltage sags using a dynamic voltage restorer (DVR). The higher active power requirement associated with voltage phase jump compensation has caused a substantial rise in size and cost of the dc link energy storage system of DVR. The existing control strategies either mitigate the phase jump or improve the utilization of dc link energy by the following: 1) reducing the amplitude of the injected voltage or 2) optimizing the dc bus energy support. In this paper, an enhanced sag compensation strategy is proposed, which mitigates the phase jump in the load voltage while improving the overall sag compensation time. An analytical study shows that the proposed method significantly increases the DVR sag support time (more than 50%) compared with the existing phase jump compensation methods. This enhancement can also be seen as a considerable reduction in dc link capacitor size for new installation. The performance of the proposed method is evaluated using simulation study and finally verified experimentally on a scaled laboratory prototype.
机译:本文涉及使用动态电压恢复器(DVR)改善电压骤降引起的敏感负载的电压质量。与电压相位跳变补偿相关的更高的有功功率要求已导致DVR直流链路储能系统的尺寸和成本大幅增加。现有的控制策略可以通过以下方式缓解相位跳变或提高直流母线能量的利用率:1)降低注入电压的幅度,或者2)优化直流母线能量支持。本文提出了一种增强的下垂补偿策略,该策略可减轻负载电压中的相位跳变,同时改善了整个下垂补偿时间。分析研究表明,与现有的相位跳变补偿方法相比,该方法显着增加了DVR垂度支持时间(超过50%)。这种增强也可以看作是新安装的直流母线电容器尺寸的显着减小。通过仿真研究评估了所提出方法的性能,并最终在规模化的实验室原型上进行了实验验证。

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