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Development of High Torque and High Power Density Hybrid Excitation Flux Switching Motor for Traction Drive in Hybrid Electric Vehicles

机译:混合动力汽车牵引驱动用大扭矩高功率密度混合励磁磁通开关电动机的研制

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摘要

This paper presents design feasibility study and development of a new hybrid excitation flux switching motor (HEFSM) as a contender for traction drives in hybrid electric vehicles (HEVs). Initially, the motor general construction, the basic working principle and the design concept of the proposed HEFSM are outlined. Then, the initial drive performances of the proposed HEFSM are evaluated based on 2D-FEA, in which the design restrictions, specifications and target performances are similar with conventional interior permanent magnet synchronous motor (IPMSM) used in HEV. Since the initial results fail to achieve the target performances, deterministic design optimization approach is used to treat several design parameters. After several cycles of optimization, the proposed motor makes it possible to obtain the target torque and power of 333 Nm and 123 kW, respectively. In addition, due to definite advantage of robust rotor structure of HEFSM, rotor mechanical stress prediction at maximum speed of 12,400 r/min is much lower than the mechanical stress in conventional IPMSM. Finally, the maximum torque and power density of the final design HEFSM are approximately 11.41 Nm/kg and 5.55 kW/kg, respectively, which is 19.98% and 58.12% more than the torque and power density in existing IPMSM for Lexus RX400h.
机译:本文介绍了一种新型的混合励磁通量切换电动机(HEFSM)的设计可行性研究和开发,该电动机可作为混合动力汽车(HEV)的牵引驱动器。首先,概述了拟议的HEFSM的电动机总体结构,基本工作原理和设计概念。然后,基于2D-FEA对提出的HEFSM的初始驱动性能进行了评估,其设计限制,规格和目标性能与HEV中使用的常规内部永磁同步电动机(IPMSM)相似。由于初始结果无法达到目标性能,因此使用确定性设计优化方法来处理多个设计参数。经过几次优化循环后,提出的电动机可以分别获得333 Nm和123 kW的目标转矩和功率。另外,由于HEFSM坚固的转子结构具有明显的优势,在最大转速为12,400 r / min时的转子机械应力预测比传统IPMSM中的机械应力低得多。最终,最终设计的HEFSM的最大扭矩和功率密度分别约为11.41 Nm / kg和5.55 kW / kg,这比雷克萨斯RX400h的现有IPMSM的扭矩和功率密度分别高19.98%和58.12%。

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