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Fault Current Control for DC Microgrid Protection Using an Adaptive Droop

机译:使用自适应下垂的直流微电网保护故障电流控制

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Successful system protection is critical to the performance of the DC microgrid system. This paper proposes an adaptive droop based fault current control for a standalone low voltage (LV) solar-photovoltaic (PV) based DC microgrid protection. In the proposed method, a DC microgrid fault is detected by the current and voltage thresholds. Generally, the droop method is used to control the power sharing between the converters by controlling the reference voltage. In this paper, this scheme is extended to control the fault current by calculating an adaptive virtual resistance Rdroop, and to control the converter output reference voltage. This effectively controls the converter pulse width, and reduces the flow of source current from a particular converter which helps to increase the fault clearing time. Additionally, a trip signal is sent to the corresponding DC circuit breaker (DCCB), to isolate the faulted converter, feeder or a DC bus. The design procedure is detailed, and the effectiveness of proposed method is verified by simulation analysis.
机译:成功的系统保护对于DC微电网系统的性能至关重要。本文提出了基于自适应下垂的故障电流控制,用于基于独立低压(LV)太阳能光伏(PV)的直流微电网保护。在提出的方法中,通过电流和电压阈值检测直流微电网故障。通常,下垂方法用于通过控制参考电压来控制转换器之间的功率共享。在本文中,该方案被扩展为通过计算自适应虚拟电阻R来控制故障电流。 下降 ,并控制转换器输出参考电压。这有效地控制了转换器的脉冲宽度,并减少了来自特定转换器的电源电流,这有助于增加故障清除时间。此外,跳闸信号被发送到相应的直流断路器(DCCB),以隔离故障的转换器,馈线或直流母线。详细设计过程,并通过仿真分析验证了所提方法的有效性。

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