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Research and Design of Fault Indicator Using Comprehensive Detection and Identification Method

机译:采用全面检测和识别方法的故障指标研究与设计

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With the progress and development of society, the power supply quality of power system is required to be higher and higher. It is necessary to locate the fault and remove it quickly. Therefore, it is necessary to install fault indicator on distribution line to improve the efficiency of finding fault location. As an important part of distribution network, the 10kV overhead line has the characteristics of many branches, wide coverage area, time-consuming and labor-consuming in line inspection and maintenance. The fault indicators currently used have problems such as complex structure, high cost of installation and deployment, and inaccurate fault detection. In this paper, a new type of fault indicator is proposed, which uses the comprehensive fault detection method. DSP processor is used to collect, calculate and process the voltage and current information of power grid. Through the embedded programming language, the comprehensive fault detection and identification is realized. Finally, the acquisition accuracy and fault judgment accuracy of the fault indicator are tested by simulating the fault signal in the laboratory. The experimental results show that the proposed fault indicator has high accuracy and can meet the requirements of fault indication, location and alarm.
机译:随着社会的进步和发展,电力系统的供电质量需要更高更高。有必要定位故障并快速删除它。因此,有必要在分销线上安装故障指示,以提高查找故障位置的效率。作为分销网络的重要组成部分,10kV架空线具有许多分支机构,宽覆盖面积,耗时和耗时的线路检查和维护的特点。当前使用的故障指示器具有复杂结构,安装和部署成本高的问题,以及不准确的故障检测。本文提出了一种新型故障指示器,采用综合故障检测方法。 DSP处理器用于收集,计算和处理电网的电压和电流信息。通过嵌入式编程语言,实现了综合故障检测和识别。最后,通过在实验室中模拟故障信号来测试故障指示器的采集精度和故障判断精度。实验结果表明,建议的故障指示器具有高精度,可满足故障指示,位置和报警的要求。

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