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Virtual negatively resistive output impedance for power sharing among paralleled inverters in microgrid

机译:微电网中并联逆变器之间的电力共享的虚拟负电阻输出阻抗

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In this paper, a new control method for paralleled inverters in microgrid is presented. The strategy of power sharing among inverters in microgrid can be divided into control with and without communication. When there is no communication among inverters, droop control is used to share power. But droop control is effective only when the transmission line is approximately pure inductive. Microgrid is in the distribution network in power system, so the resistive component in transmission line is very high. Under this condition, there is severe coupling in droop control and power sharing mechanism is invalid. In this paper, by making use of virtual impedance, the equivalent output impedance of inverter becomes negatively resistive, while its amplitude equals to the value of resistive component in transmission line, so the resistive component in transmission line will be neutralized. So the circuit can be viewed as inverter supplying power through pure inductive transmission line. Therefore, the coupling in droop control can be removed and power sharing mechanism is effective. The analysis of the proposed method and design procedure are provided. Simulation results validate the proposed control strategy.
机译:本文介绍了微电网中并联逆变器的新控制方法。 MicroGrid中的逆变器之间的电力共享策略可分为控制和无通信的控制。当逆变器之间没有通信时,Droop控件用于共享电力。但是,仅当传输线近似纯的电感时,下垂控制才有效。 MicroGrid在电力系统中的分配网络中,因此传输线中的电阻部件非常高。在这种情况下,下垂控制和电力共享机制的严重耦合无效。本文通过利用虚拟阻抗,逆变器的等效输出阻抗变得负电阻,而其幅度等于传输线中的电阻部件的值,因此将中和传输线中的电阻部件。因此,通过纯电感传输线可以将电路视为逆变器供电。因此,可以去除下垂控制中的耦合,并且功率共享机制是有效的。提供了提出的方法和设计程序的分析。仿真结果验证了所提出的控制策略。

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