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Investigation on digital algorithm for on-line monitoring and diagnostics of metal oxide surge arrester based on an accurate model

机译:基于精确模型的金属氧化物避雷器在线监测与诊断数字算法研究

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摘要

The digital algorithms presently available for on-line monitoring of metal oxide surge arrester (MOA) are normally based on a simplified equivalent model consisting of a capacitor and a nonlinear resistor in parallel, which however in applications poses some deficiency compared with experimental results, leading to a certain phase discrepancy between the line voltage and the resistive branch current, due to a capacitive effect in the branch. This paper develops a new digital algorithm based on an accurate model of metal oxide surge arrester, in which base-frequency approximating method and iterating scheme are combined in use. Computer simulations are carried out to validate the new approach, showing the digital algorithm gives an application accuracy of less than 1% even with harmonised power source and different levels of background noises while within 10% of the measured sum leakage current.
机译:当前可用于在线监测金属氧化物电涌放电器(MOA)的数字算法通常基于简化的等效模型,该模型由并联的电容器和非线性电阻器组成,但是与实验结果相比,在应用中存在一些不足,由于支路中的电容效应,线路电压和支路电流之间存在一定的相位差。本文基于金属氧化物避雷器的精确模型,开发了一种新的数字算法,该算法结合了基频逼近方法和迭代方案。进行了计算机仿真以验证新方法的有效性,结果表明,即使使用统一的电源和不同水平的背景噪声,数字算法在不到测量总泄漏电流的10%范围内,应用精度也将低于1%。

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