A new topology for dynamic voltage restorers without dc link

E. Babaei, M. Farhadi Kangarlu
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引用次数: 60

Abstract

In this paper, a new topology based on matrix converter (MC) is proposed for dynamic voltage restorer (DVR). Matrix converters convert ac to ac with no dc link. So, applying this type of converters is an acceptable way to eliminate dc link in conventional DVRs. Three independent three-phase to single-phase MCs with 6 or 8 bi-directional power switches are applied in the proposed topology. As a result, the proposed DVR structure can be used to restore load voltage in both balanced and unbalanced voltage sag and swell conditions. The range of the DVR's correct operation varies selecting 6 or 8 numbered bi-directional power switches in matrix converters. The proposed topology increases the speed and efficiency of DVR and in return decreases the size of DVR, due to the dc link elimination. The proposed DVR can be presented as a package able to compensate voltage sag and swell regardless of the balance or unbalance conditions. Also, one of the most important capabilities of the proposed DVR is the voltage restoring in extremely disturbed networks. The experimental results as well as simulation results in PSCAD/EMTDC environment show that the proposed topology operates correctly and the voltage of sensitive load is completely controlled.
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无直流链路动态电压恢复器的新拓扑
本文提出了一种基于矩阵变换器(MC)的动态电压恢复器拓扑结构。矩阵变换器将交流电转换为交流电,没有直流链路。因此,应用这种类型的转换器是消除传统dvr中的直流链路的一种可接受的方法。在所提出的拓扑结构中,采用了三个独立的三相到单相的mc,带有6个或8个双向电源开关。因此,所提出的DVR结构可用于平衡和不平衡电压跌落和膨胀条件下的负载电压恢复。在矩阵变换器中选择6或8个编号的双向功率开关,DVR的正确操作范围会有所不同。由于消除了直流链路,所提出的拓扑结构提高了DVR的速度和效率,同时减小了DVR的尺寸。所提出的DVR可以作为一个能够补偿电压凹陷和膨胀的封装,而不管平衡或不平衡的情况。此外,所提出的DVR最重要的功能之一是在极度干扰的网络中恢复电压。实验结果以及在PSCAD/EMTDC环境下的仿真结果表明,所提出的拓扑结构工作正确,敏感负载电压得到完全控制。
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