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Current–time characteristics of resistive superconducting fault current limiters

机译:电阻性超导故障限流器的电流-时间特性

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摘要

Superconducting fault current limiters (SFCLs) may play an important role in power-dense electrical systems. Therefore, it is important to understand the dynamic characteristics of SFCLs. This will allow the behavior of multiple SFCLs in a system to be fully understood during faults and other transient conditions, which will consequently permit the coordination of the SFCL devices to ensure that only the device(s) closest to the fault location will operate. It will also allow SFCL behavior and impact to be taken into account when coordinating network protection systems. This paper demonstrates that resistive SFCLs have an inverse current-time characteristic: They will quench (become resistive) in a time that inversely depends upon the initial fault current magnitude. The timescales are shown to be much shorter than those typical of inverse overcurrent protection. A generic equation has been derived, which allows the quench time to be estimated for a given prospective fault current magnitude and initial superconductor temperature and for various superconducting device and material properties. This information will be of value to system designers in understanding the impact of SFCLs on network protection systems during faults and in planning the relative positions of multiple SFCLs.
机译:超导故障限流器(SFCL)可能在功率密集型电气系统中发挥重要作用。因此,了解SFCL的动态特性很重要。这将允许在故障和其他瞬态情况下完全理解系统中多个SFCL的行为,因此将允许SFCL设备进行协调,以确保只有最靠近故障位置的设备才能运行。在协调网络保护系统时,还将允许考虑SFCL行为和影响。本文证明,电阻式SFCL具有逆电流-时间特性:它们将在与初始故障电流幅值成反比的时间内淬灭(变为电阻性)。所显示的时间尺度比反向过电流保护的典型时间尺度短得多。已经推导了一个通用方程,该方程允许针对给定的预期故障电流幅度和初始超导体温度以及各种超导器件和材料特性来估算淬火时间。该信息对于系统设计者在理解故障期间SFCL对网络保护系统的影响以及规划多个SFCL的相对位置方面将具有参考价值。

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