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Numerical Study on Transient State of Inductive Fault Current Limiter Based on Field-Circuit Coupling Method

机译:基于场电路耦合方法的感应故障限流器瞬态数值研究

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摘要

As the capacity of the power grid continues to expand, high-level fault currents might be caused during a contingency, and the problem of short-circuit current over-limitation is imminent. The high-temperature superconducting (HTS) fault current limiter (FCL) is an effective method to solve this problem. In this paper, a transient numerical model for the process of limiting current in the inductive FCL is proposed. The model is based on the coupling of multiphysics finite element simulation and a circuit model. The voltage source is used as input, which can simulate the macroscopic characteristics in the process of limiting current, such as the voltage and current waveforms, and can also simulate microscopic characteristics, such as temperature, magnetic field, and electrodynamic force distribution. The short-circuit experimental data of an air core inductive superconducting fault current limiter (SFCL) prototype was compared with the simulation results to verify the reliability of the simulation.
机译:随着电网容量的不断扩大,在紧急情况下可能会产生高水平的故障电流,并且短路电流超限的问题迫在眉睫。高温超导(HTS)故障限流器(FCL)是解决此问题的有效方法。本文提出了一种用于感应式FCL中限制电流过程的瞬态数值模型。该模型基于多物理场有限元仿真和电路模型的耦合。电压源用作输入,它可以在限制电流的过程中模拟宏观特性,例如电压和电流波形,还可以模拟微观特性,例如温度,磁场和电动势分布。将空心感应超导故障限流器(SFCL)原型的短路实验数据与仿真结果进行了比较,以验证仿真的可靠性。

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