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Detection and analysis of series arc using non-conventional methods in low-voltage switchboards

机译:低压配电盘中使用非常规方法检测和分析串联电弧

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摘要

Detection and analysis of series arc in low-voltage switchboards have significant meaning for preventing the electrical fires. However, the conventional current and voltage methods have low a sensitivity to sense the minute arc discharge, leading to the fail operation of arc fault circuit interrupter. Therefore, this paper dealt with the application of non-conventional methods, including the ultra-violet (UV), acoustic emission (AE), and transient earth voltage (TEV) sensor in arc detection, for the purpose of improving the detection sensitivity and reducing the potential electric fires. Three types of typical arc faults in low-voltage switchboards were simulated and the actual detection environment was configured. From the results, the wavelength of UV light emitted from arc was 200-400 nm and the arc-induced AE signal had a frequency range of 40-600 kHz. The TEV signals generated from three types of arc faults presented different frequency spectrums, based on which the time-frequency map was used to classify the fault type.
机译:低压配电盘中串联电弧的检测和分析对于防止电气火灾具有重要意义。然而,常规的电流和电压方法具有低的灵敏度以检测微小的电弧放电,从而导致电弧故障电路断续器的故障操作。因此,本文将非常规方法,包括紫外线(UV),声发射(AE)和瞬变地电压(TEV)传感器在电弧检测中的应用,以提高检测灵敏度和减少潜在的电火。模拟了低压配电盘中三种典型的电弧故障,并配置了实际的检测环境。从结果可以看出,电弧发出的紫外光的波长为200-400 nm,电弧诱导的AE信号的频率范围为40-600 kHz。从三种类型的电弧故障产生的TEV信号呈现不同的频谱,基于该频谱,时频图可用于对故障类型进行分类。

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