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首页> 外文期刊>IEEE Transactions on Power Delivery >Analysis of Ferroresonance Modes in Power Transformers Using Preisach-Type Hysteretic Magnetizing Inductance
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Analysis of Ferroresonance Modes in Power Transformers Using Preisach-Type Hysteretic Magnetizing Inductance

机译:使用Preisach型磁滞磁化电感的电力变压器铁磁谐振模式分析

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摘要

The magnetic hysteresis phenomenon plays an important role in the ferroresonance behavior of a transformer. However, most existing transformer models for the analysis of the ferroresonance phenomenon either ignore the hysteresis effects or represent it based on the hysteresis major loop and scale it for lower current levels. Such a modeling approach does not reflect the actual physical behavior of the magnetic core with respect to the ferroresonance phenomenon. This paper, based on Preisach theory, introduces an accurate model of hysteretic inductor to represent a single-phase transformer for the investigation of the ferroresonance phenomenon. Based on the developed model, time-domain simulation studies show that even in the case of a single-phase transformer where no magnetic coupling exists between the three-phases, all known types of ferroresonance, including fundamental, sub-harmonic, quasi-periodic and chaotic modes, may occur. The effects of hysteresis and its initial conditions, grading capacitors and transformer winding capacitance on occurrence of ferroresonance and its change of mode are also discussed.
机译:磁滞现象在变压器的铁磁谐振行为中起重要作用。但是,大多数现有的用于分析铁磁谐振现象的变压器模型要么忽略磁滞效应,要么基于磁滞主回路来表示它,并针对较低的电流水平对其进行缩放。这种建模方法不能反映磁芯相对于铁磁谐振现象的实际物理行为。本文基于Preisach理论,介绍了一种磁滞电感器的精确模型,以表示单相变压器,用于研究铁磁谐振现象。基于已开发的模型,时域仿真研究表明,即使在单相变压器的三相之间不存在磁耦合的情况下,所有已知的铁磁谐振类型,包括基本,次谐波,准周期和混乱模式,可能会发生。还讨论了磁滞及其初始条件,电容分级和变压器绕组电容对铁磁谐振及其模式改变的影响。

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