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A mechanically robust rotor with transverse-laminations for a synchronous reluctance machine for traction applications

机译:具有用于牵引应用的同步磁阻机的机械鲁棒转子,用于牵引应用

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摘要

This paper presents a method to improve the rotor mechanical designs of the synchronous reluctance machine (SynRM) without considerable degradation in machine's performance. SynRM have been used in industries due to their unique merits such as fast dynamic response, and low cost. However, taking into account the major requirements of traction applications i.e., high torque and power density, low torque ripple, wide speed range, and high speed operation capability, this machine is still under investigation. Since, proper operation at high speed is a major requirement of the traction motor, the unique geometrical structure of the rotor suggests that its mechanical robustness is a challenge. Thus, prior to the final design, the effect of magnetic and rotational forces on the rotor geometry that are the source of fatigue and harmful deformation at critical points such as tangential and radial ribs need to be analyzed. At low speed, high current demand for maximum torque makes the magnetic forces dominant whereas at high speed, the rotational force dominates the others. In this work, the performance of a SynRM equipped with transversally laminated anisotropic (TLA) rotor with different geometries are investigated and compared while the proposed method is used. It is shown that, although the machine's proper magnetic and mechanical performance is required for an optimal design, these aspects need to be analyzed simultaneously due to their mutual effect.
机译:本文提出了一种改进同步磁阻机(SYNRM)转子机械设计的方法,而无需大量的机器性能下降。 Synrm由于其独特的功绩,诸如快速动态响应和低成本而被用作行业。然而,考虑到牵引应用的主要要求,即,高扭矩和功率密度,低扭矩脉动,宽速度范围和高速操作能力,这款机器仍在进行调查中。由于高速的适当操作是牵引电动机的主要要求,转子的独特几何结构表明其机械稳健性是挑战。因此,在最终设计之前,需要分析磁性和旋转力对转子几何形状的影响,这是诸如切向和径向肋的关键点处的疲劳和有害变形的源。在低速下,对最大扭矩的高电流需求使磁力优势在高速下显着,旋转力占据各方。在这项工作中,调查并比较配备有具有不同几何形状的横向层压的各向异性(TLA)转子的SYNRM的性能,并在使用所提出的方法时进行比较。结果表明,尽管最佳设计需要机器的适当磁性和机械性能,但是由于它们的相互效应,需要同时分析这些方面。

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