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首页> 外文期刊>Electric Power Applications, IET >Calculation and validation of stray-field loss in magnetic and non-magnetic components under harmonic magnetizations based on TEAM Problem 21
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Calculation and validation of stray-field loss in magnetic and non-magnetic components under harmonic magnetizations based on TEAM Problem 21

机译:基于团队问题的谐波磁化下磁性和非磁性部件中杂散场损耗的计算与验证21

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摘要

On the basis of the TEAM problem 21 benchmark model, a modelling method to predict stray-field loss under real working conditions is presented and validated to investigate the influence of harmonic excitation on stray-field loss of shielding structural components of converter transformers in high-voltage direct current systematically. An improved method is adapted to determine stray-field loss of magnetic and non-magnetic component based on the experimental measurement and numerical simulation. An experimental platform is established to measure magnetic properties and loss characteristics of the grain-oriented silicon steel sheets, aiming at parameter identification and verification of the loss modelling applicable for laminated sheets under harmonic magnetisation. Meanwhile, the additional iron loss caused by perpendicular flux penetration is obtained by special treatment of material properties and analysed to observe its contribution to the stray-field loss under three-dimensional harmonic magnetisation. Field and loss comparison between measurement and simulation verifies the validation of the proposed modelling method.
机译:基于团队问题21基准模型,提出了一种在实际工作条件下预测杂散场损耗的建模方法,并验证了谐波激发对高屏幕变压器屏蔽结构部件遥控结构部件的影响对谐波场损耗的影响。电压直流系统地。一种改进的方法,适于基于实验测量和数值模拟确定磁性和非磁性分量的杂散场损耗。建立实验平台以测量晶粒化硅钢板的磁性和损耗特性,旨在参数识别和验证适用于谐波磁化下的层压板的损失模型。同时,通过物质性质的特殊处理获得垂直通量渗透引起的额外的铁损,并分析了在三维谐波磁化下观察其对杂散场损耗的贡献。测量和仿真之间的场和损耗比较验证了所提出的建模方法的验证。

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  • 来源
    《Electric Power Applications, IET》 |2020年第3期|367-374|共8页
  • 作者单位

    North China Electric Power University School of Electrical and Electronic Engineering Baoding People's Republic of China;

    North China Electric Power University School of Electrical and Electronic Engineering Baoding People's Republic of China;

    Baoding Tianwei Baobian Electric Co. Ltd. Hebei Provincial Key Laboratory of Electromagnetic & Structural Performance of Power Transmission and Transformation Equipment Baoding People's Republic of China;

    Baoding Tianwei Baobian Electric Co. Ltd. Hebei Provincial Key Laboratory of Electromagnetic & Structural Performance of Power Transmission and Transformation Equipment Baoding People's Republic of China;

    North China Electric Power University School of Electrical and Electronic Engineering Baoding People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    magnetisation; steel; magnetic leakage; power transformers; magnetic flux;

    机译:磁化;钢;磁漏;电力变压器;磁通量;

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