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Control of Transient Power During Unintentional Islanding of Microgrids

机译:微电网无意孤岛期间的暂态功率控制

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In inverter-based microgrids, the paralleled inverters need to work in grid-connected mode and stand-alone mode and to transfer seamlessly between the two modes. In grid-connected mode, the inverters control the amount of power injected into the grid. In stand-alone mode, however, the inverters control the island voltage while the output power is dictated by the load. This can be achieved using the droop control. Inverters can have different power set points during grid-connected mode, but in stand-alone mode, they all need their power set points to be adjusted according to their power ratings. However, during sudden unintentional islanding (due to loss of mains), transient power can flow from inverters with high power set points to inverters with low power set points, which can raise the dc-link voltage of the inverters causing them to shut down. This paper investigates the transient circulating power between paralleled inverters during unintentional islanding and proposes a controller to limit it. The controller monitors the dc-link voltage and adjusts the power set point in proportion to the rise in the voltage. A small-signal model of an islanded microgrid is developed and used to design the controller. Simulation and experimental results are presented to validate the design.
机译:在基于逆变器的微电网中,并联的逆变器需要在并网模式和独立模式下工作,并且需要在两种模式之间无缝转换。在并网模式下,逆变器控制注入电网的电量。但是,在独立模式下,逆变器控制孤岛电压,而输出功率则由负载决定。这可以使用下垂控制来实现。逆变器在并网模式下可以具有不同的功率设定点,但是在独立模式下,它们都需要根据功率额定值来调整功率设定点。但是,在突然的无意孤岛(由于市电丢失)期间,瞬态功率会从具有高功率设定点的逆变器流向具有低功率设定点的逆变器,这会升高逆变器的直流母线电压,从而导致逆变器关闭。本文研究了无意孤岛期间并联逆变器之间的瞬态循环功率,并提出了一种限制它的控制器。控制器监视直流母线电压,并与电压上升成比例地调整功率设定点。开发了孤岛微电网的小信号模型,并将其用于设计控制器。给出了仿真和实验结果以验证设计。

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