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Droop control of a bipolar dc microgrid for load sharing and voltage balancing

机译:双极直流微电网的下垂控制,以实现负载共享和电压平衡

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A bipolar dc microgrid features three voltage levels and is capable of transmitting power more efficiently than a unipolar system. This paper proposes a droop control to achieve load sharing and voltage balancing in such a microgrid system. Droop control is adopted to ensure that autonomous sharing of load power can be realized without communication. Moreover, the positive and negative pole voltages in the bipolar dc microgrid can be well regulated regardless of load changes and input voltage mismatch. Two battery energy storage systems are incorporated for balancing load and generation, and the lifetime of batteries can be improved through proper coordination control. Simulation results in the PLECS environment and experimental results obtained from an OPAL-RT system are presented to verify the effectiveness of load sharing and voltage balancing of droop control.
机译:双极直流微电网具有三个电压电平,并且比单极系统更有效地传输功率。本文提出了一种下垂控制,以在这种微电网系统中实现负载共享和电压平衡。采用下垂控制以确保无需通信即可实现负载功率的自主共享。此外,无论负载变化和输入电压失配如何,双极性直流微电网中的正负电压均可得到很好的调节。并入了两个电池储能系统,以平衡负载和发电,并且可以通过适当的协调控制来延长电池的使用寿命。给出了PLECS环境下的仿真结果以及从OPAL-RT系统获得的实验结果,以验证负载共享和下垂控制的电压平衡的有效性。

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