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DC-Arcing Detection by Noise Measurement With Magnetic Sensing by TMR Sensors

机译:通过TMR传感器的磁感应噪声测量来检测DC电弧

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摘要

An arc fault establishes a current path in the air which may cause malfunction of direct current (dc) system and even a fire hazard. Arc fault detection is essential to improving the reliability, efficiency, and safety of the dc system. However, the randomness of dc arc faults makes it difficult to define their characteristics. In this paper, a magnetic-sensing-based technique is proposed to detect dc arc. This paper developed a promising dc-arcing detection technique based on the analysis of frequency-domain features of the magnetic field measured by a magnetic sensor. The effects of the supply voltage, load current, and electrode diameter on the frequency domain of the arc current were investigated. The experimental results show that the proposed detection technique could reliably discriminate the normal operation and arc fault. This technique is cost-effective because it can be implemented with low-cost magnetoresistive sensors and does not require an expensive current transformer.
机译:电弧故障会在空气中建立电流路径,这可能会导致直流(dc)系统发生故障,甚至引发火灾。电弧故障检测对于提高直流系统的可靠性,效率和安全性至关重要。然而,直流电弧故障的随机性使得难以定义其特征。本文提出了一种基于磁感应的技术来检测直流电弧。本文在分析由磁传感器测量的磁场的频域特征的基础上,开发了一种有前途的直流电弧检测技术。研究了电源电压,负载电流和电极直径对电弧电流频域的影响。实验结果表明,所提出的检测技术能够可靠地区分正常运行和电弧故障。该技术具有成本效益,因为它可以用低成本的磁阻传感器实现,并且不需要昂贵的电流互感器。

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