不同电极材料对直流电弧故障检测特性影响的研究

Jing Wang, Yu Meng, Xingwen Li, Silei Chen
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引用次数: 2

摘要

随着光伏、风电等可再生能源的应用和推广,直流配电系统已成为电力领域的研究热点。直流系统容量的不断增大和系统电路的日益复杂,大大增加了直流电弧故障发生的概率,因此及时检测电弧故障是十分必要的。大多数研究通常根据UL1699B标准研究基于铜电极的电弧故障。然而,在直流系统中,不同的电缆材料将用于不同的场景。这些特性可能会对直流故障电弧检测产生新的干扰。本文在直流电弧故障实验平台上得到了基于不同电极材料的直流电弧故障电流和电压波形。首先,从时域角度分析比较了不同材料电弧故障电流的差异;讨论了不同材料电弧故障现象差异的原因。然后,利用小波变换方法找出电弧故障检测特征的差异,并从时频域的角度进行比较。最后,总结了不同材料对直流电弧故障检测特性的影响,并提出了相关建议,有助于提高电弧故障检测策略的通用性和适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on the Influence of Different Electrode Materials on DC Arc Fault Detection Characteristics
With the application and promotion of renewable energies such as photovoltaics and wind power, DC power distribution systems have become a hot spot in the electrical field. The increasing DC system capacity and the increasingly complex system circuits have greatly increased the probability of DC arc faults, which makes it necessary to detect arc faults in time. Most researches usually studied arc faults based on copper electrodes according to the standard UL1699B. However, various cable materials would be used for different scenarios in DC systems. The characteristics may cause new interference to DC fault arc detection. In this paper, DC arc fault current and voltage waveforms based on different electrode materials are obtained from the DC arc fault experiment platform. First, differences among arc fault currents based on different materials are analyzed and compared from the perspective of time domain. The reason for differences in arc fault phenomenon based on different materials are also discussed. Then, the wavelet transform method is used to find differences of arc fault detection characteristics which are compared from the perspective of time-frequency domain. Finally, the influence of different materials on DC arc fault detection characteristics is summarized and relevant suggestions are made, which can help make the arc fault detection strategy more universal and applicable.
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