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Detection of Series Arcs Using Load Side Voltage Drop for Protection of Low Voltage DC Systems

机译:使用负载侧压降检测串联电弧以保护低压直流系统

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Low voltage dc distribution grids face issues associated with arc faults, aggravated by the absence of current zero crossing. The focus of this work is to comprehensively develop a method of series arc fault detection at the load side power electronics, based on the electrode dependent initial voltage drop occurring at the arc initiation. The proposed arc detection algorithm is described along with the structure and time constants of the designed bandpass filter. The operational boundaries of the arc detection algorithm are defined for copper electrodes depending on the set threshold voltage and the system parameters, like grid inductance, resistance and the load capacitance. Further, the detection time and the zone of guaranteed positive detection are depicted. These are validated through test simulations on the state space model of the system. Finally, experimental validation of the proposed scheme is carried out, wherein, a series arc is generated in the dc circuit and the programmed microcontroller provides a real time signal upon detecting the arcing event. The results on variation in detection time with set threshold voltage is also presented experimentally.
机译:低压直流配电网面临与电弧故障相关的问题,由于电流过零的缺乏而加剧了问题。这项工作的重点是基于在电弧启动时发生的与电极相关的初始电压降,全面开发一种在负载侧电力电子设备中进行串联电弧故障检测的方法。描述了所提出的电弧检测算法以及所设计的带通滤波器的结构和时间常数。根据设置的阈值电压和系统参数(例如栅极电感,电阻和负载电容),为铜电极定义了电弧检测算法的操作范围。此外,描绘了检测时间和保证阳性检测的区域。这些通过系统状态空间模型上的测试仿真得到验证。最后,对所提出的方案进行实验验证,其中,在直流电路中产生串联电弧,并且编程的微控制器在检测到电弧事件时提供实时信号。实验还给出了检测时间随设定阈值电压变化的结果。

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