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A New Method to Improve Fault Location Accuracy in Transmission Line Based on Fuzzy Multi-Sensor Data Fusion

机译:基于模糊多传感器数据融合的输电线路故障定位精度提高方法

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摘要

Fast and accurate fault location in transmission lines has great significance for power system stability and power supply reliability. The location results of the various algorithms are diverse. The conflicting results influence the operator's analysis on fault-based quick restoration of power systems. This paper proposes a new method to improve fault location accuracy in transmission lines, relying on the multi-sources fault location results from distance relays of two ends. The location results from two ends and a fault position are related to each other. According to these relationships, a multi-sensor data fusion-based transmission line fault location model is built. In the model, fuzzy inference systems are formed and serve as the initial fusion step to identify fault scenarios. Weighted covariance fusion coefficients are calculated and used to determine the final fusion result. The case study is carried out using PSCAD/EMTDC and field recording data from substations. The performance of the method is tested for different fault types, fault positions, fault resistances, fault inception angles, load How, line parameters and two-terminal unsynchronized angles.
机译:在输电线路中快速准确地定位故障对电力系统的稳定性和电源可靠性具有重要意义。各种算法的定位结果是多种多样的。矛盾的结果会影响操作员对基于故障的电力系统快速恢复的分析。提出了一种基于两端距离继电器的多源故障定位结果来提高输电线路故障定位精度的新方法。两端的位置结果与故障位置相互关联。根据这些关系,建立了基于多传感器数据融合的传输线故障定位模型。在该模型中,形成了模糊推理系统,并将其用作识别故障场景的初始融合步骤。计算加权协方差融合系数,并将其用于确定最终融合结果。案例研究是使用PSCAD / EMTDC进行的,并且现场记录了变电站的数据。针对不同的故障类型,故障位置,故障电阻,故障起始角度,负载方式,线路参数和两端子非同步角度,测试了该方法的性能。

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