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Mode Adaptive Droop Control With Virtual Output Impedances for an Inverter-Based Flexible AC Microgrid

机译:基于逆变器的柔性交流微电网具有虚拟输出阻抗的模式自适应下垂控制

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摘要

A decentralized power control method in a single-phase flexible ac microgrid is proposed in this paper. Droop control is widely considered to be a good choice for managing the power flows between microgrid converters in a decentralized manner. In this work, to enhance the power loop dynamics, droop control combined with a derivative controller is used in islanded mode. In grid-connected mode, to strictly control the power factor in the point of common coupling (PCC), a droop method combined with an integral controller is adopted. Small-signal analysis of the proposed control is shown both in islanded and grid-connected mode. The proposed control scheme does not need any mode switching action. Thus, it is relatively simple in control for full mode of operation. Smooth transitions between the operation modes and the effectiveness of the proposed control scheme are evaluated through simulation and experimental results.
机译:提出了一种单相柔性交流微电网的分散功率控制方法。下降控制被广泛认为是以分散方式管理微电网转换器之间的功率流的理想选择。在这项工作中,为了增强功率环路的动态性,在孤岛模式下使用了与微分控制器结合的下垂控制。在并网模式下,为了严格控制公共耦合点(PCC)的功率因数,采用了与积分控制器结合的下垂方法。在孤岛模式和并网模式下均显示了所建议控件的小信号分析。所提出的控制方案不需要任何模式切换动作。因此,对于全操作模式的控制相对简单。通过仿真和实验结果评估了操作模式之间的平稳过渡以及所提出控制方案的有效性。

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