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高频变压器磁热耦合降阶快速计算方法

刘刚 马睿智 杨朔侨 陈彬 刘云鹏

高电压技术2026,Vol.52Issue(4):1578-1587,10.
高电压技术2026,Vol.52Issue(4):1578-1587,10.DOI:10.13336/j.1003-6520.hve.20250947

高频变压器磁热耦合降阶快速计算方法

Fast Calculation Method for Magneto-thermal Coupling Reduced-order Modeling of High-frequency Transformers

刘刚 1马睿智 1杨朔侨 1陈彬 2刘云鹏1

作者信息

  • 1. 河北省输变电设备安全防御重点实验室(华北电力大学),保定 071003
  • 2. 三峡大学电气与新能源学院,宜昌 443002
  • 折叠

摘要

Abstract

In the magnetothermal coupling calculation,the traditional numerical calculation method often faces the con-tradiction between computational accuracy and efficiency.Therefore,in view of the shortcomings of the traditional method in the high-frequency environment,a fast calculation method based on the reduced order model is proposed,namely,the proper orthogonal decomposition-radial basis function response surface method with linear terms including linear polynomial(POD-RBFLP);meanwhile,the response surface model between the modal coefficient and the working conditions is established,so that the temperature field distribution can be quickly obtained under different working condi-tions.This method is suitable for real-time online simulation applications by reducing the order while maintaining high calculation accuracy.In specific applications,the POD-RBFLP method is applied to high-frequency transformers,its temperature field is reduced,and the effectiveness of the method is verified by numerical calculation.The test of 50 sets of working conditions shows that the absolute error of the temperature field reduction model in the whole field is less than 5 ℃,the relative error is less than 3%,and the speed is increased by 337.44 times.The results show that the POD-RBFLP method has high accuracy and can be adopted to effectively improve the speed of temperature field calculation.

关键词

高频变压器/磁热耦合/温度场/降阶模型/径向基函数响应面法

Key words

high-frequency transformers/magneto-thermal coupling/temperature field/reduced-order model/radial basis function response surface method

引用本文复制引用

刘刚,马睿智,杨朔侨,陈彬,刘云鹏..高频变压器磁热耦合降阶快速计算方法[J].高电压技术,2026,52(4):1578-1587,10.

基金项目

国家重点研发计划(2021YFB2401700).Project supported by National Key R&D Program of China(2021YFB2401700). (2021YFB2401700)

高电压技术

1003-6520

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