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Analytical Method for Performance Degradation of Voltage Limiting Type SPD Based on Leakage Current Measurement

机译:基于漏电流测量的电压限制型SPD性能劣化的分析方法

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SPD degradation analysis is a key technology of intelligent SPDs. MOV varistor is the core component of voltage limiting type SPD. It is well known that the increase of leakage current is the main factor causing MOV degradation. Therefore, the monitoring of MOV leakage current is the key to judge the operating condition of voltage limiting type SPD. According to the monitored object, it is divided into two categories: the method of full current and the method of resistive current. The full current is simple to implement, since the response sensitivity is low in the initial stage of SPD degradation, which is more common in some low-cost applications; the resistive current measurement method is more complicated to carry out, but can reflect the degradation trend of SPD sensitively and accurately, which is usually applied in some high demand schemes. The measurement methods of resistive current mainly include: active loss, compensation, phase, and harmonic analysis. This paper introduces several methods of leakage current testing, and analyzes the characteristics of various methods. Through a series of experimental data, the measured leakage current data is used to analyze the degradation trend of SPD.
机译:SPD劣化分析是智能SPD的关键技术。 MOV变阻器是电压限制型SPD的核心组件。众所周知,漏电流的增加是导致MOV降解的主要因素。因此,对MOV漏电流的监测是判断电压限制型SPD的操作条件的关键。根据受监控的对象,它分为两类:全电流的方法和电阻电流的方法。全电流易于实施,由于SPD劣化的初始阶段响应灵敏度低,这在一些低成本应用中更为常见;电阻电流测量方法更加复杂,但可以敏感,准确地反映SPD的降解趋势,这通常在一些高要求方案中应用。电阻电流的测量方法主要包括:主动损失,补偿,相位和谐波分析。本文介绍了几种漏电流测试方法,分析了各种方法的特性。通过一系列实验数据,测量的漏电流数据用于分析SPD的降级趋势。

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