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Protection Principle for a DC Distribution System with a Resistive Superconductive Fault Current Limiter

机译:具有电阻性超导故障限流器的直流配电系统的保护原理

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A DC distribution system, which is suitable for access to distributed power generation and DC loads, is one of the development directions in power systems. Furthermore, it could greatly improve the energy efficiency and reduce the loss of power transportation. The huge short circuit current is always a great threat to the safety of the components, especially the capacitors and diodes. A resistive superconductive fault current limiter (SFCL), which could respond quickly once a fault happens and limit the fault current to a relatively low level, becomes a good solution to this problem. In this paper, the operational principle of the resistive SFCL is introduced first, and then, the DC short-circuit fault characteristic of the DC distribution system with the SFCL is analyzed and the effectiveness of the SFCL verified. In order to realize the selectivity of the protection in the DC distribution system with SFCL, a new transient current protection principle based on Ip (the peak value of the current) and tp (the transient time that the current takes to reach its peak value) is proposed. Finally, a model of a 10-kV DC distribution system with an SFCL is established and simulated in PSCAD/METDC. Simulation results have demonstrated the validity of the analysis and protection principle.
机译:适用于接入分布式发电和直流负载的直流配电系统是电力系统的发展方向之一。此外,它可以大大提高能源效率并减少电力传输的损失。巨大的短路电流始终对组件(尤其是电容器和二极管)的安全性构成巨大威胁。电阻性超导故障电流限制器(SFCL)可以很好地解决此问题,一旦出现故障,它可以迅速做出响应并将故障电流限制在相对较低的水平。本文首先介绍了电阻式SFCL的工作原理,然后分析了带SFCL的直流配电系统的直流短路故障特性,并验证了SFCL的有效性。为了实现带有SFCL的直流配电系统中保护的选择性,基于I p (电流峰值)和t p (电流达到峰值所需的过渡时间)。最后,建立了带有SFCL的10 kV直流配电系统模型,并在PSCAD / METDC中对其进行了仿真。仿真结果证明了分析和保护原理的有效性。

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