电弧
电弧故障断路器
弧(几何)
电接点
点火系统
材料科学
断层(地质)
电气工程
导电体
核工程
预充电
电压
电极
发电机(电路理论)
机械
机械工程
功率(物理)
工程类
短路
复合材料
功率因数
物理
地质学
热力学
航空航天工程
地震学
量子力学
恒功率电路
作者
Jonathan Andrea,Patrick Schweitzer,Jean-Mary Martel
标识
DOI:10.1109/holm.2011.6034778
摘要
Differents types of arc faults can be responsible for the start of an electrical fire. Depending on the power system and the application (photovoltaic, vehicule, aircraft, residential wiring) the arc fault may involve contact or non-contact arcing with eventually semi-conductive materials in the vicinity. Other characteristics such as the gap distance or the electrode material and geometry may also strongly differ. An electrical model was developed to fit with the arc fault scenarios described in the standard for AFCI UL1699. The contact arcing copper-graphite electrodes produced by the arc generator and the non-contact arcing on carbonized track produced with the arc clearing time tester were observed and their electrical characteristics (restrike and burning voltage, time constant and stability) could be verified thanks to the electrical model with a very good agreement. A qualitative study showing the various parameters used for fitting shows that the model is applicable regardless of the arc ignition principle.
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