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An Accurate Current Transformer Model Based on Preisach Theory for the Analysis of Electromagnetic Transients

机译:基于Preisach理论的精确电流互感器模型,用于电磁瞬态分析

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摘要

This paper presents a new and accurate Current Transformer (CT) model for the analysis of electromagnetic transients, based on representation of core magnetization characteristics using the Preisach Theory. Unlike the existing CT models, the proposed model determines shapes of hysteresis minor loops independent of the hysteresis major loop. This results in a higher precision and more flexibility to fit the model hysteresis loops with the actual core material hysteresis loops of the CT. The proposed model has been implemented in the PSCAD/EMTDC software environment. As an application of the model, transient behavior of a CT due to a fault and its subsequent reclosure attempts is investigated and compared with the Electromagnetic Transients Program Reactor Type-96 based CT model and the IEEE Power System Relaying Committee CT model. Time-domain simulation studies show that the transient behavior of the CT is significantly different, if different hysteresis minor loop trajectories but the same hysteresis major loop are adopted. This paper concludes that both hysteresis major and minor loops must be represented to accurately simulate performance of a CT for the reported case studies.
机译:本文基于使用Preisach理论的磁芯磁化特性表示,提出了一种用于分析电磁瞬变的新型且精确的电流互感器(CT)模型。与现有的CT模型不同,提出的模型确定磁滞小环路的形状,而与磁滞大环路无关。这将导致更高的精度和更大的灵活性,以使模型的磁滞回线与CT的实际芯材磁滞回线相匹配。建议的模型已在PSCAD / EMTDC软件环境中实现。作为该模型的应用,研究了由于故障而导致的CT暂态行为及其随后的重合闸尝试,并与基于96型电磁暂态程序反应堆的CT模型和IEEE电力系统中继委员会CT模型进行了比较。时域仿真研究表明,如果采用不同的磁滞小回路轨迹但采用相同的磁滞主回路,则CT的瞬态行为会明显不同。本文的结论是,对于所报告的案例研究,必须同时表示磁滞的主回路和次回路,以准确模拟CT的性能。

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