Performance analysis of a three-phase SISFCL with the variation of circuit parameters using jiles atherton hysteresis model

A. Upadhyaya, D. Sarkar, A. B. Choudhury, D. Roy
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引用次数: 4

Abstract

In modern electrical power systems, Saturated Iron-Core Superconducting Fault Current Limiters (SISFCL) are becoming ever popular on account of their ability to instantaneously and reliably detect and limit the high magnitude fault current caused by short circuit faults. The SISFCL accomplishes this by altering the magnetic state of its ferromagnetic core material between saturation and unsaturation, thereby producing low impedance during normal operation and high impedance during faulted condition. In this paper, the mathematical model of a three-phase SISFCL is simulated using numerical methods in the MATLAB software environment. The effect of magnetic hysteresis of the core material is incorporated in the simulation via the Jiles-Atherton hysteresis model. The performance of the SISFCL is analysed against variations of the different circuit parameters namely, the fault resistance, DC bias current, number of turns of the AC and DC coil winding.
利用jiles atherton滞回模型分析三相SISFCL随电路参数变化的性能
在现代电力系统中,饱和铁芯超导故障限流器(SISFCL)由于能够实时、可靠地检测和限制短路故障引起的大量级故障电流而受到越来越多的关注。SISFCL通过改变铁磁磁芯材料在饱和和不饱和之间的磁性状态来实现这一点,从而在正常工作时产生低阻抗,在故障状态时产生高阻抗。本文在MATLAB软件环境下,采用数值方法对三相SISFCL的数学模型进行了仿真。通过Jiles-Atherton磁滞模型将磁芯材料的磁滞效应纳入仿真。根据不同的电路参数,即故障电阻、直流偏置电流、交直流线圈绕组匝数的变化,分析了SISFCL的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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