首页> 外文期刊>Chinese Journal of Electrical Engineering >Double-loop control structure using proportional resonant and sequence-decoupled resonant controllers in static coordinates for dynamic voltage restorer
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Double-loop control structure using proportional resonant and sequence-decoupled resonant controllers in static coordinates for dynamic voltage restorer

机译:使用比例谐振和序列隔离谐振控制器的双回路控制结构在静态坐标中进行动态电压恢复器

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摘要

Among incidents on grids, the sag/swell voltage is considered as the most frequent incident. To solve this problem, custom power devices are used. In particular, the dynamic voltage restorer (DVR) is a modern and efficient customer device. DVRs are used to mitigate voltage sag/swells and harmonics on the load bus, thus protecting the sensitive loads. The DVR is a serial compensator that applies a voltage to the point of common coupling to maintain the voltage of sensitive load at the nominal value. To improve the performance of DVRs, in this study, the control strategy of the two-stage loop circuit is implemented. The external voltage control loop uses a sequence-decoupled resonant (SDR) controller, and the inner current-control loop uses the proportional resonant (PR) controller implemented in the stationary frame αβ.
机译:在网格上的事件中,SAG / SWELL电压被认为是最常见的事件。要解决此问题,使用自定义电源设备。特别是,动态电压恢复器(DVR)是现代和高效的客户设备。 DVRS用于减轻负载总线上的电压凹槽/膨胀和谐波,从而保护敏感负载。 DVR是串行补偿器,将电压施加到公共耦合点,以保持敏感负载的电压以标称值。为了提高DVRS的性能,在本研究中,实现了两级环路电路的控制策略。外部电压控制回路使用序列解耦谐振(SDR)控制器,内部电流控制回路使用在静止帧Aβ中实现的比例谐振(PR)控制器。

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