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首页> 外文期刊>IEEE Transactions on Industry Applications >A Coordinated Optimal Feedback Control of Distributed Generators for Mitigation of Motor Starting Voltage Sags in Distribution Networks
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A Coordinated Optimal Feedback Control of Distributed Generators for Mitigation of Motor Starting Voltage Sags in Distribution Networks

机译:分布式发电机的协调最优反馈控制,以减轻配电网络中的电动机启动电压骤降

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摘要

This article proposes a coordinated optimal feedback control approach to mitigate the induction motor starting voltage sag and support the transient restoration in distribution networks. The proposed technique is expected to reduce the starting high current to maintain the network voltage using neighboring voltage supporting distributed generation. An optimal feedback-based coordinated controller (CC) has been designed to estimate the reactive power to be injected at different locations of the network based on the motor loads. The CC on top of the existing local controller (LC) uses motor voltage feedback signals, thereby adjusting the reactive power support based on the voltage sag. The proposed voltage sag mitigation strategy is tested in both 12.4 kV network and 123 bus larger distribution networks containing single and multiple motor and distributed generation units. From simulation results, it is revealed that the proposed coordinated optimal feedback control of VSDGs can provide a fast restoration of the motor starting transient voltage dip.
机译:本文提出了一种协调最优反馈控制方法,以减轻感应电动机的启动电压骤降并支持配电网络中的暂态恢复。预期所提出的技术将使用支持分布式发电的相邻电压来减少启动大电流以维持网络电压。设计了基于反馈的最佳协调控制器(CC),以基于电动机负载来估算要注入到网络不同位置的无功功率。现有本地控制器(LC)顶部的CC使用电动机电压反馈信号,从而根据电压骤降来调整无功功率支持。所建议的电压骤降缓解策略已在12.4 kV网络和123总线较大的配电网络中进行了测试,这些配电网络包含单台和多台电动机以及分布式发电装置。从仿真结果可以看出,所提出的VSDG协调最优反馈控制可以快速恢复电动机的启动瞬态电压骤降。

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