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Single phase to earth fault location method in distribution network based on signal injection principle

机译:基于信号注入原理的分配网络中的单相对地阶段故障定位方法

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A single phase to earth fault location method in distribution network based on signal injection principle is proposed. It is expected to solve single phase to earth fault location problem in neutral indirectly earth system. When single phase to earth fault occurs, a sine current signal with constant frequency is injected into the fault phase from potential transformer's secondary side, the injected signal current and its voltage drop on the fault line can be measured through the fault line's zero sequence current transformer (CT) and potential transformer (PT) on the bus. Based on distributed parameter model of distribution line, we can get the relational expressions between injected signal voltage and current at measuring point and fault point, then, we can solve the fault distance by using the resistive characteristic of transition resistance. This method is not affected by system structure and operating mode, and the use of distributed parameter line model eliminating the impact of distributed capacitance, the result of fault distance has high precision. Simulation results verify the correctness and feasibility of the proposed method.
机译:单相接地故障的位置的方法在基于信号喷射原理分配网络算法。它有望解决单相接地故障的位置的问题在中性间接接地系统。当单相接地故障发生时,具有恒定频率的正弦电流信号被注入从电压互感器的次级侧上的故障相,注入的信号电流和对故障线路其电压降可通过断裂线的零序电流互感器来测量总线上(CT)和电压互感器(PT)。基于配电线路的分布参数模型,我们可以在测量点与故障点获得注入的信号的电压和电流之间的关系式的话,我们可以通过使用过渡电阻的电阻特性解决了故障距离。该方法不受系统的结构和操作模式,并且消除了分布电容的影响使用分布参数线路模型的,故障距离的结果具有较高的精度。仿真结果验证了该方法的正确性和可行性。

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