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Research and Development of High-precision Single-phase Ground Fault Detection and Location System in Distribution Network

机译:配电网高精度单相接地故障检测与定位系统的研究与开发

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A single-phase ground fault detection and location system has been researched and developed to solve the problem of difficulties in locating small current grounding faults in distribution network. It is determined that the zero mode voltage is obtained by the Karenbauer phase-mode transformation to judge whether a fault has occurred. Meanwhile, the fault is located by measuring the time difference of waveform by B-type traveling wave method. The system first uses the capacitor divider to extract the fault transient voltage signal. After simple analysis and processing of the data by the DSP (Digital Signal Processing), the fault information is summarized into the upper computer through the IoT (Internet of Things) communication module to select the fault line. The nanosecond timing module is used to synchronously time the system, which can improve the measurement accuracy of the line wave arrival time of the line monitoring device to the nanosecond level. Finally, the function of the module and the feasibility of the system are verified by debugging the modules of the system.
机译:为了解决配电网小电流接地故障定位困难的问题,研究开发了一种单相接地故障检测定位系统。通过Karenbauer相模变换确定获得零模电压,以判断是否发生了故障。同时,通过用B型行波法测量波形的时间差来定位故障。系统首先使用电容器分压器提取故障瞬态电压信号。通过DSP(数字信号处理)对数据进行简单的分析和处理后,故障信息通过IoT(物联网)通信模块汇总到上位机中以选择故障线。纳秒级计时模块用于对系统进行同步计时,可以将线路监控设备的线路波到达时间的测量精度提高到纳秒级。最后,通过调试系统模块,验证了模块的功能和系统的可行性。

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