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Performance analysis of a 380V three-phase saturated iron-core superconducting fault current limiter using Jiles-Atherton hysteresis model

机译:基于Jiles-Atherton磁滞模型的380V三相饱和铁芯超导故障限流器的性能分析

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摘要

A saturated iron-core superconducting fault current limiter (SISFCL) is capable of limiting fault currents by virtue of its ability to change the magnetic state of its core material between saturation and unsaturation. On account of this, the incorporation of the effects of magnetic hysteresis is essential for providing greater accuracy in the analysis. In this paper, a mathematical model of a three-phase SISFCL is developed utilizing Jiles-Atherton's hysteresis model. The mathematical model is simulated in MATLAB software and its performance is analyzed for three different types of faults, specifically, three-phase to ground, single-line to ground and double-line to ground faults. A comparison is also made regarding the effect of a three-phase to ground fault on the circuit current with and without the FCL.
机译:饱和铁芯超导故障电流限制器(SISFCL)能够通过在饱和和不饱和之间改变其核心材料的磁性状态来限制故障电流。因此,磁滞效应的合并对于提供更高的分析准确性至关重要。在本文中,利用Jiles-Atherton的磁滞模型建立了三相SISFCL的数学模型。在MATLAB软件中对数学模型进行了仿真,并分析了三种不同类型故障的性能,特别是三相接地故障,单线接地故障和双线接地故障。在有无FCL的情况下,还对三相接地故障对电路电流的影响进行了比较。

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