开关磁阻电机定子绕组匝数磁场计算专用软件的应用

Vyacheslav V. Sirotkin, D.A. Pigalev, I. V. Bol'shikh, S. Chernyaev
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摘要

背景:本文根据物理定律描述了铜定子绕组极端匝数附加损耗的发生过程。分析了开关磁阻电机定子绕组趋肤效应产生的原因,评估了趋肤效应对中大功率开关磁阻电机附加损耗的影响程度。在COMSOL Multiphysics软件包中创建了SRM扇区的2d模型,以指定SRM定子绕组中的磁场分布,并量化额外损耗的数量。А将FEMM程序中得到的SRM构型12/8的磁场分布与COMSOL Multiphysics软件包中构建的SRM磁场分布进行了比较,以评估结果的可靠性。目的:通过在COMSOL Multiphysics软件包中建立SRM扇区(极区)的相位二维模型,计算定子绕组匝间的磁场分布,量化绕组中涡流引起的附加损耗量。方法:采用COMSOL Multiphysics软件包构建SRM的二维扇区。为了得到模拟区域内电磁场分布的结果,采用有限元法对收益调整进行估算,并与有限元程序中的计算结果进行了比较。结果:在COMSOL Multiphysics软件包和FEMM程序中获得的SRM磁场分布模式证实了定子绕组极端匝数存在趋肤效应。它会降低SRM的能量效率,并导致绕组匝局部过热。仿真结果表明,在FEMM程序中得到的SRM磁场分布图与COMSOL Multiphysics软件包中得到的SRM磁场分布图相似。SRM各部分磁感应强度值的比值误差为37%。这是可以接受的,说明了COMSOL多物理场软件包计算机建模的正确性。结论:COMSOL Multiphysics软件包和FEMM程序中的SRM磁场分布模式证实了定子绕组极端匝数存在趋肤效应,这将为进一步利用2d模型确定附加损耗数值领域的研究奠定基础,并将SRM的2d模型推进到3d模型。
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Application of specialized software for calculation of magnetic field in the turns of switched reluctance motors stator windings
Background: The article describes the process of occurrence of additional losses in the extreme turns of the copper stator windings, based on physical laws. The causes of the skin effect in the stator windings of a switched reluctance motor (SRM) are presented, an assessment of the skin effect influence degree on additional losses in the SRM of medium and high power. 2D-model of the SRM sector in COMSOL Multiphysics software package is created to specify distribution of magnetic field in the SRM stator windings and to quantify the amount of additional losses. А comparison of the magnetic field distribution of the SRM configuration 12/8 obtained in the FEMM program and the SRM magnetic field distribution built in COMSOL Multiphysics software package is presented to assess the reliability of the results. Aim: Calculation of the magnetic field distribution in the turns of the stator winding by building a phased 2D-model of the SRM sector (pole division) in COMSOL Multiphysics software package to quantify the amount of additional losses caused by eddy currents in the windings. Methods: COMSOL Multiphysics software package is used to build 2D-sector of the SRM. To obtain results on the distribution of electromagnetic fields within the simulated area, finite element methods (FEM) are used to estimate income adjustments, the results are compared with calculations in the FEMM program. Results: The patterns of the magnetic field distribution of the SRM obtained in COMSOL Multiphysics software package and in FEMM program confirm the presence of a skin-effect in the extreme turns of the stator winding. It can reduce the energy efficiency of the SRM and cause local overheating of the winding turns. As a result of the simulation, the picture of the magnetic field distribution of the SRM obtained in the FEMM program is similar to the picture of the magnetic field distribution of the SRM obtained in COMSOL Multiphysics software package. Ratio error of the values of the magnetic induction of different parts of the SRM is 37 %. It is acceptable and it indicates the correctness of computer modeling in COMSOL Multiphysics software package. Conclusion: The patterns of the magnetic field distribution SRM in COMSOL Multiphysics software package and in the FEMM program confirm the presence of the skin-effect in the extreme turns of the stator winding, which will allow further research in the field of determining the numerical values of additional losses using 2D-model, and proceed from 2D-model to 3D-model of the SRM.
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