基于有限元法的6/4开关磁阻电机多物理场仿真

R. Reis, M. Kimpara, J. Pinto, B. Fahimi
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引用次数: 1

摘要

-开关磁阻电机(SRM)的性能可以通过驱动控制和/或机器设计来改善。然而,由于SRM设计的不同,驱动控制可能会更加复杂和昂贵,而良好的SRM设计可能会导致更简单和更便宜的驱动控制系统。为了在设计控制/驱动系统之前评估SRM的性能,重要的是对机器进行多物理场仿真,这样,如果电磁,结构和热性能不能满足简单控制/驱动系统的要求,可以重新设计SRM,直到达到可行的目标。本文采用有限元法对6/4三相SRM进行了全面的仿真分析,为今后优化设计技术的应用提供了评估方法。首先计算了电机的主要几何参数,然后进行了静、动态仿真,分析了电机的电磁性能。然后,通过模态分析得到结构的固有频率和振型。最后,对铜损耗引起的内部温升进行了热分析。在ANSYS软件包中进行了分析,为电机近最优设计阶段提供了有见地的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MULTI-PHYSICS SIMULATION OF 6/4 SWITCHED RELUCTANCE MOTOR BY FINITE ELEMENT METHOD
– The switched reluctance motor (SRM) performance can be improved by either drive control and/or machine design. However, the drive control may be more complex and expensive depending on the SRM design, whereas a favorable SRM design may result in simpler and cheaper drive control system. In order to evaluate the SRM performance before designing the control/drive system, it is important carrying out a multiphysics simulation of the machine, in such way that if electromagnetics, structural and thermal performance do not cope with the requirements for simpler control/drive system, the SRM can be redesigned until reach a feasible goal. This paper presents a comprehensive simulation analysis of a 6/4 three-phase SRM using the finite element method as evaluation approach for future use in optimization design techniques. First, the main geometrical parameters of the motor were calculated and then static and dynamic simulations were conducted to analyze the motor electromagnetic performance. Afterwards, the natural frequencies and vibration modes were found through modal analysis. Finally, the thermal analysis was accomplished to investigate the internal temperature rise due to the copper losses. The analysis has been performed in ANSYS package, providing an insightful guidance for the near optimum motor designing stage. 
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