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Fault Protection in Medium Voltage DC microgrids

机译:中电压DC微电网中的故障保护

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We define an approach Local Information Based Fault Protection (LIFP) for robust protection against short-circuit faults that does not rely on microgrid-wide communications. Using a monopolar bus as an example, we show how each entity connected to the dc bus, including current-limiting power converters and non-load-breaking disconnect switches, can autonomously detect, identify, and appropriately react to the presence of a short-circuit arcing fault based only on its own local observations of voltage and current. The method for LIFP was previously reported for systems where the effective resistance of short-circuit faults was small compared to the resistance of the bus work or cabling [1][2]. But the effective resistance of an arc can sometimes be large compared to that of the bus cables, and the arc resistance can vary randomly in time with large bandwidth; these characteristics complicate implementation of the LIFP method. We describe the system design constraints, and then we report the effectiveness of applying the method for a reference system over a wide range of system operating conditions (e.g. system current), and fault conditions (arc location, arc length). Simulation results show that the LIFP method can successfully protect the system.
机译:我们定义了一种方法基于本地信息的故障保护(LIVP),以防止不依赖于微普拉德通信的短路故障保护。用单极总线作为示例,我们展示了连接到直流总线的每个实体,包括限流功率转换器和不加载断开开关,可以自主检测,识别,识别,并适当地对缺点的存在反应。仅基于其自身的电压和电流观察的电源电弧缩进故障。先前,预先报道了LIMP的方法,用于短路故障的有效电阻与总线工作的电阻或电缆的电阻[1] [2]相比。但是,与总线电缆相比,弧的有效电阻有时可以大,并且电弧电阻可以随时间随机随机变化;这些特征使LIVP方法的实施复杂化。我们描述了系统设计约束,然后我们报告了在广泛的系统操作条件(例如系统电流)和故障条件(电弧位置,电弧长度)上应用参考系统方法的有效性。仿真结果表明,LIMP方法可以成功保护系统。

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