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A High Speed Single-Ended Fault Detection Method for DC Distribution Feeder—Part I: Feasibility Analysis of Magnetic Ring as Line Boundary

机译:直流配电馈线的高速单端故障检测方法 - 第一部分:磁环的可行性分析为线边界

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摘要

DC distribution network has a lot of advantages over traditional ac distribution network and it is considered as one of the best power supply modes in the future. However, protection relay design for dc distribution network is a major challenge due to the requirement of high speed fault detection for the vulnerability of converters. In this paper, it is proposed that the boundary protection is very suitable for dc distribution network since it can protect the whole line only based on local measurement and does not need to coordinate with neighboring relays. However, it needs to find suitable line boundary for dc distribution network. Impedance features of magnetic ring is tested and difference in steepness and peak time of voltage travelling wave in case of internal and external faults when magnetic ring installed at both ends of dc distribution line is analyzed. Results show that magnetic ring is feasible to be used as line boundary. Besides, a wide band model of magnetic ring is proposed based on vector fitting and circuit synthesis method. It paves the way of analysis on features of internal and external faults at dc distribution line and validation of proposed fault detection method.
机译:直流配电网络与传统的AC配电网络相比,它具有很多优势,它被认为是未来最好的电源模式之一。然而,直流配电网的保护继电器设计是由于对转换器漏洞的高速故障检测的要求,这是一个重大挑战。在本文中,建议边界保护非常适合于直流配送网络,因为它可以仅基于本地测量保护整行,并且不需要与相邻继电器协调。但是,它需要找到直流分配网络的合适的线边界。在分析安装在DC分配线两端的磁环的情况下,测试磁环的阻抗特征,并且在内部故障时,电压行波的陡度和峰值时间差异。结果表明,磁环可用作线边界。此外,基于矢量拟合和电路合成方法提出了一种宽带磁环模型。它铺平了DC配电线路和外部故障特征分析的方式和提出的故障检测方法的验证。

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