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An Earth Fault Distance Location Algorithm in Compensated Networks with Additional Estimation of the Fault Impedance and Fault Current

机译:具有额外估计故障阻抗和故障电流补偿网络中的接地故障距离位置算法

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Earth fault distance protection with distance protection relays is common practice in solidly grounded networks. However, in compensated networks earth faults can cause big problems, because they do not extinguish themselves. To find the fault point is from high interest also in combination with network expansion [9]. In previous investigations the authors found that the classic algorithm of these distance protection relays principally can be used also for compensated networks, - however the accuracy of the distance calculation strongly depends on the network conditions [1],[2]. In this paper a new improved algorithm is developed. For this purpose an exact 3-phase mathematical simulation model of the investigated network is used to check the results of the improved algorithm. The simulations show, that this improved distance calculation provides very good accuracy up to earth fault transitions impedances of 1 kOhm. Furtheron it is shown in the paper that the same algorithm can be used in 2-phase networks as well. With the implemented improvements the algorithm again allows earth fault transitions impedances of up to 1 kOhm. Finally, the simulation results are validated by real test data to verify the usability of this improved algorithm.
机译:带距离保护继电器的接地故障距离保护是常规接地网络中的常见做法。然而,在补偿网络中,地球故障可能导致大问题,因为它们不会熄灭自己。为了找到故障点,也与网络扩展相结合的高兴趣[9]。在先前的调查中,作者发现,这些距离保护继电器的经典算法也可以用于补偿网络,但是距离计算的精度强烈取决于网络条件[1],[2]。本文开发了一种新的改进算法。为此目的,调查网络的精确三相数学仿真模型用于检查改进算法的结果。模拟显示,这种改进的距离计算提供了1 kohm的接地故障转换的良好精度。在纸纸中示出了相同的算法也可以在2相网络中使用。通过实现的改进,算法再次允许接地故障转换最多1个kohm的阻抗。最后,通过实际测试数据验证模拟结果以验证这种改进算法的可用性。

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