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Decentralized Coordination Control for Parallel Bidirectional Power Converters in a Grid-Connected DC Microgrid

机译:并网直流微电网中并联双向功率转换器的分散协调控制

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摘要

In the grid-connected mode, the dc microgrid is connected to the utility by parallel bidirectional power converters (BPCs), which provide voltage support for the dc microgrid. The coordination control for these parallel BPCs is very challenging. First, for the parallel BPCs, there is circulating current among them, which limits the total system capacity and may damage switching devices. Second, taking the constant power load into consideration, the performance especially the stability of the dc microgrid is degraded if the conventional idc- vdcdroop is adopted to share the power. Third, the voltage restoration should be faster for the better quality of dc voltage, and the restoration strategy should be scalable to the changes of the dc microgrid topology for the better flexibility. For these problems, this paper proposes a decentralized control method for the parallel BPCs, which can make the BPCs operate in coordination and provide voltage support for the dc microgrid well. Furthermore, the reliability of the proposed control method is illustrated by the stability analysis. All the conclusions are verified by the real-time hardware-in-loop tests.
机译:在并网模式下,直流微电网通过并行双向功率转换器(BPC)连接到公用事业,该转换器为直流微电网提供电压支持。这些并行BPC的协调控制非常具有挑战性。首先,对于并联BPC,它们之间存在循环电流,这限制了系统的总容量并可能损坏开关设备。第二,考虑到恒定的功率负载,如果常规的i n dc n- v n dc ndroop共享权力。第三,电压恢复应更快以提供更好的直流电压质量,并且恢复策略应可扩展至直流微电网拓扑的变化以提供更好的灵活性。针对这些问题,本文提出了一种并行BPC的分散控制方法,可以使BPC协调运行,并为直流微电网提供良好的电压支持。此外,通过稳定性分析说明了所提出的控制方法的可靠性。所有的结论都通过实时的硬件在环测试得到了验证。

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