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Research of Shark Concept Using 3D Finite Element Analysis

机译:基于3D有限元分析的鲨鱼概念研究

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摘要

Due to their comparatively higher efficiency and power density, permanent magnet synchronous machines (PMSM) is the most popular type of the electric machines used for the traction systems in electric vehicles (EV). Considering the increasing cost of rare earth materials and other disadvantages of PMSMs, it is necessary to develop reluctance machines needed for the usage in the EVs. In order to increase the competitiveness of the reluctance machines, it is important to develop solutions that would increase their torque density, overall efficiency, and eliminate disadvantages such as torque ripple, which is very undesirable in the field of EVs. One of the solutions is in the development of the longitudinal cross-section of the electric machine tooth zone - the proposed use of the Shark concept. In this paper, several Shark profiles (air gap shapes) are examined. Results of experiments conducted of three-dimensional (3D) magnetic field calculations using finite element analysis (FEA) have been discussed and the efficiency and behaviour of different Shark profiles have been compared. The results of experiments show that the Shark concept can be a perspective solution for the improvement of the reluctance machines, thus making them more competitive in the field of the traction systems of EVs.
机译:由于其相对较高的效率和功率密度,永磁同步电机(PMSM)是用于电动汽车(EV)的牵引系统的最受欢迎的电机类型。考虑到稀土材料的成本增加以及PMSM的其他缺点,有必要开发用于电动汽车中的磁阻机。为了提高磁阻电机的竞争力,开发能够提高其扭矩密度,总体效率并消除诸如电动汽车领域中非常不希望的诸如扭矩波动之类的缺点的解决方案非常重要。解决方案之一是开发电机齿区域的纵向横截面-建议使用Shark概念。在本文中,研究了几种鲨鱼的轮廓(气隙形状)。讨论了使用有限元分析(FEA)进行三维(3D)磁场计算的实验结果,并比较了不同Shark轮廓的效率和行为。实验结果表明,Shark概念可以作为改进磁阻电机的一种透视解决方案,从而使它们在电动汽车牵引系统领域更具竞争力。

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