基于柔性Rogowski线圈的直流供电系统短路电流检测新方法

Yan Wang, Xiaoshe Zhai, Zhengxiang Song, Yingsan Geng
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引用次数: 7

摘要

直流供电系统的短路电流在几毫秒内就会上升到一个危险值。限流器必须在微秒级检测到这种故障,才能更有效地限制短路电流的幅度。现有的故障检测方法多采用并联装置,检测故障电流的时间较长,难以实现快速检测。本文提出了一种基于柔性Rogowski线圈的继电保护新方法,将Rogowski线圈的差分信号和积分信号结合起来实现继电保护功能。依次讨论了线圈的设计方法、相关实验和继电保护系统的仿真结果。首先,建立了Rogowski线圈的等效电路,并用有限元法计算了线圈的分布参数;其次,对线圈的频率响应进行了计算和实验验证。Rogowski线圈的参数可以根据仿真结果进行调整和设计。最后,对该继电保护系统进行了仿真,结果表明,该继电保护系统可以满足船舶直流配电系统短电流保护的要求,并验证了本文提出的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new method to detect the short circuit current in DC supply system based on the flexible Rogowski coil
The short circuit current in DC (Direct Current) supply system will rise to a risk value within a few milliseconds. The current limiter must detect this fault on microsecond level to restrict the amplitude of short circuit current more effectively. For the existing method, the shunt is always employed for such fault detection, where the time to detect the fault current is relative long and hard for the rapid detection. In this paper, a novel method based on the flexible Rogowski coil is proposed, where the differential signal and the integral signal of the Rogowski coil are combined to perform the relay protection function. The design method of the coil, the relative experiments and the simulation result of the relay protection system are all discussed in sequence. Firstly, the equivalent circuit of the Rogowski coil is established, in which the distributed parameters of the coil are calculated with the Finite Element Method. Secondly, the frequency response of the coil is calculated and validated experimentally. The parameters of the Rogowski coil can be adjusted and designed according to the simulation result. Finally, the simulation of the relay protection system is performed, which shows that the demand of short current protection in ship DC distribution system can be satisfied and the method proposed in this paper is verified.
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