The Influence of DC Household Electrical Appliances on Series Arc Fault Characteristics

Silei Chen, Yuming Zhao, Yu Meng, Xingwen Li, Zhigang Zhao, Jinrong Yuan
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引用次数: 1

Abstract

There are multiple kinds of sources and loads in dc microgrids, leading coupling system noise interferences to series arc fault signals. In order to meet load operation requirements of the proper voltage level and electrical energy form, multiple involved power electronic components would also have a significant influence on series arc fault characteristics. To guarantee the effective arc fault protection, series arc fault experiments and characteristic analysis are important to be conducted in this situation. At first, an experimental setup of a typical dc microgrid is designed with three voltage levels (750V, 400V, 48V) in this paper. Then the series arc fault electrical signals are acquired through three kinds of current sensors with different kinds of single dc household electrical appliance. Arc fault current profile would not show significant variations with some dc household electrical appliances such as a dc induction cooker. Next, the series arc fault current would display different behaviors due to the unique operation characteristic of household electrical appliances, resulting in arc fault detection difficulties. After processing the arc fault current through the time-frequency transformation, distribution patterns of arc fault information are summarized in another domain. Finally, normal operations of household electrical appliances are compared to understand differences between the system transitions and arc faults, which lays the foundation of the accurate arc fault detection.
直流家用电器对串联电弧故障特性的影响
直流微电网中存在多种源和负载,导致耦合系统噪声干扰对串联电弧故障信号的影响。为了满足适当电压等级和电能形式的负载运行要求,多个涉及的电力电子元件也会对串联电弧故障特性产生重大影响。为了保证有效的电弧故障保护,在这种情况下进行串联电弧故障实验和特性分析是很重要的。本文首先设计了典型直流微电网的实验装置,该实验装置具有750V、400V、48V三个电压等级。然后通过三种不同种类的单台直流家用电器的电流传感器获取串联电弧故障电信号。电弧故障电流分布与一些直流家用电器(如直流电磁炉)没有明显的变化。其次,由于家用电器独特的运行特性,串联电弧故障电流会表现出不同的行为,给电弧故障检测带来困难。在对电弧故障电流进行时频变换处理后,在另一个域中总结出电弧故障信息的分布规律。最后通过对比家用电器的正常运行情况,了解系统过渡与电弧故障的区别,为准确检测电弧故障奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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