温度对线路启动永磁同步电机功能参数影响的实验验证

IF 1.4 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Mariusz Baranski, Andrzej Demenko, Wojciech Szelag, Wieslaw Lyskawinski
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引用次数: 0

摘要

本文讨论了温度对线路启动永磁同步电机(LSPMSM)功能参数影响的有限元(FE)分析。文中描述了 LSPMSM 中耦合电磁和热现象的二维 (2D) FE 模型。模型考虑了磁路的非线性、温度对永磁体磁特性的影响以及材料的电特性和热特性。为了分析温度对线路启动永磁同步电机功能参数的影响,我们开发了内部软件。通过在专门设计和建造的测量试验台上对原型电机进行测量,对模拟结果进行了验证。介绍了温度对 LSPMSM 功能参数影响的实验验证研究结果,并由此得出结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Experimental verification of temperature effects on functional parameters in a line start permanent magnet synchronous motor

Experimental verification of temperature effects on functional parameters in a line start permanent magnet synchronous motor

The paper deals with the finite element (FE) analysis of the temperature influence on functional parameters of the line start permanent magnet synchronous motor (LSPMSM). The two-dimensional (2D) FE model of coupled electromagnetic and thermal phenomena in the LSPMSM was described. The non-linearity of the magnetic circuit and the influence of temperature on the magnetic properties of permanent magnets, as well as on the electric and thermal properties of the materials, have been considered. To analyse the effect of temperature on the functional parameters of a line start permanent magnet synchronous motor, in-house software was elaborated. The simulation results were validated by measurements of the prototype motor on a specially designed and constructed measuring test stand. The results of the research on experimental verification of temperature effects on functional parameters in the LSPMSM were presented, and the conclusions resulting therefrom have been formulated.

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来源期刊
Iet Science Measurement & Technology
Iet Science Measurement & Technology 工程技术-工程:电子与电气
CiteScore
4.30
自引率
7.10%
发文量
41
审稿时长
7.5 months
期刊介绍: IET Science, Measurement & Technology publishes papers in science, engineering and technology underpinning electronic and electrical engineering, nanotechnology and medical instrumentation.The emphasis of the journal is on theory, simulation methodologies and measurement techniques. The major themes of the journal are: - electromagnetism including electromagnetic theory, computational electromagnetics and EMC - properties and applications of dielectric, magnetic, magneto-optic, piezoelectric materials down to the nanometre scale - measurement and instrumentation including sensors, actuators, medical instrumentation, fundamentals of measurement including measurement standards, uncertainty, dissemination and calibration Applications are welcome for illustrative purposes but the novelty and originality should focus on the proposed new methods.
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