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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Voltage sag compensation strategy for unified power quality conditioner with simultaneous reactive power injection
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Voltage sag compensation strategy for unified power quality conditioner with simultaneous reactive power injection

机译:同时注入无功功率的统一电能质量调节器的电压骤降补偿策略

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Unified power quality conditioner (UPQC) holds the capability of solving power quality problems, especially shows good performance in the voltage sag compensation. In this paper, a compensation strategy based on simultaneous reactive power injection for UPQC (namely UPQC-SRI) is proposed to address the issue of voltage sag. The proposed UPQC-SRI determines the injection angle of compensation voltage with consideration of optimal configuration of UPQC current-carrying. Moreover, the compensation strategy also considers the current-carrying limit of UPQC, and then the zero active power injection region of UPQC-SRI (also called UPQC-SRI region) is obtained. Under the conditions which exceed the UPQC-SRI region, the limit value of shunt current is determined by this proposed strategy. Finally, the proposed strategy and the corresponding algorithm are verified under the PSCAD/EMTDC platform. The result indicates the proposed UPQC-SRI strategy in this paper can provide more persistent voltage sag compensation than the previous strategies for the sensitive load.
机译:统一电能质量调节器(UPQC)具有解决电能质量问题的能力,尤其在电压骤降补偿方面表现出良好的性能。本文提出了一种基于同时无功注入的UPQC补偿策略(即UPQC-SRI),以解决电压暂降问题。所提出的UPQC-SRI考虑到UPQC载流的最佳配置来确定补偿电压的注入角。此外,补偿策略还考虑了UPQC的载流极限,从而获得UPQC-SRI的零有功功率注入区域(也称为UPQC-SRI区域)。在超出UPQC-SRI区域的条件下,此提议的策略确定了分流电流的限值。最后,在PSCAD / EMTDC平台下验证了所提出的策略和相应的算法。结果表明,与之前针对敏感负载的策略相比,本文提出的UPQC-SRI策略可以提供更持久的电压骤降补偿。

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