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Investigation of Interline Dynamic Voltage Restorer with Virtual Impedance Injection

机译:具有虚拟阻抗注入的线间动态电压恢复器的研究

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The inter-line dynamic voltage restorer (IDVR) consists of several voltage source inverters connected to different independent distribution feeders with common dc bus. When one of the inverters compensates for voltage sag that appears in its feeder (voltage control mode), the other inverters pump the required power into the dc bus (power control mode). Each inverter will have both voltage and power controllers; only one controller is in use during the abnormal conditions according to its feeder state. The voltage controller uses one of the dynamic voltage restoration techniques. In this paper, the in-phase technique is applied and two types of loads are considered (constant impedance and three phase induction motor). Since the voltage restoration process may need real power injection into the distribution system, the power controller injects this power via voltage injection. This voltage injection is simulated by voltage drop across series virtual impedance. A new scheme is proposed to select the impedance value. The impedance value is selected such that the power consumed by this impedance represents the required power to be transferred without perturbing the load voltage. The performance of this system is also studied during voltage swell. A scheme for operation of multi-feeder IDVR system is proposed in this paper. Simulation results substantiate the proposed concept.
机译:线间动态电压恢复器(IDVR)由多个电压源逆变器组成,这些逆变器连接到具有公共dc总线的不同独立配电馈线。当一台逆变器补偿其馈线中出现的电压骤降时(电压控制模式),另一台逆变器将所需功率泵入直流总线(功率控制模式)。每个逆变器将同时具有电压和功率控制器。根据馈线状态,在异常情况下仅使用一个控制器。电压控制器使用动态电压恢复技术之一。在本文中,采用了同相技术,并考虑了两种类型的负载(恒定阻抗和三相感应电动机)。由于电压恢复过程可能需要将有功功率注入配电系统,因此功率控制器会通过电压注入来注入此功率。通过串联虚拟阻抗两端的压降模拟该电压注入。提出了一种选择阻抗值的新方案。选择阻抗值,以使该阻抗消耗的功率表示在不干扰负载电压的情况下传输所需的功率。在电压骤升期间也研究了该系统的性能。提出了多馈线IDVR系统的运行方案。仿真结果证实了所提出的概念。

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