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Study on interior permanent magnet synchronous motors for hybrid electric vehicle traction drive application considering permanent magnet type and temperature

机译:考虑永磁体类型和温度的混合动力汽车牵引驱动应用内部永磁同步电动机研究

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Recently, interior permanent magnet synchronous motors (Interior-PMSMs) have become known as a good candidate for hybrid electric vehicle (HEV) traction drive application due to their unique merits. However, the dynamic and steady-state behaviors of these motors are quite dependent on the permanent magnet (PM) type, configuration, and volume in rotor structures. This paper uses a novel structure of Interior-PMSMs for traction applications with fragmental buried rotor magnets in order to achieve low torque ripple, iron losses, and cogging torque. In this paper, first, the effect of the PM type on a d-q equivalent circuit model is examined. Next, the design and simulation of an Interior-PMSM for HEV traction drive application, in order to extract the output values of the motor and sensitivity analysis of the PM type, are done using a 3-dimensional finite element method model. We then present the back electromotive force, power factor, cogging torque, flux density, torque per ampere diagram, PM volume, and constant power speed ratio value behavior of the designed Interior-PMSM with different PMs in the rotor structure, and we discuss the effect of temperature variation on these output parameters. This study can help designers in the design approach of such motors.
机译:近来,由于其独特的优点,内部永磁同步电动机(Interior-PMSM)已成为混合动力电动汽车(HEV)牵引驱动应用的良好选择。但是,这些电动机的动态和稳态行为完全取决于永磁体(PM)的类型,配置和转子结构中的体积。本文采用新颖的Interior-PMSM结构,将其与破碎的埋入式转子磁体配合使用,以实现低转矩脉动,铁损和齿槽转矩。在本文中,首先,研究了PM类型对d-q等效电路模型的影响。接下来,使用三维有限元方法模型完成用于HEV牵引驱动应用的Interior-PMSM的设计和仿真,以提取电动机的输出值和PM类型的灵敏度分析。然后,我们介绍了在转子结构中设计有不同PM的Interior-PMSM的设计内部PMSM的反电动势,功率因数,齿槽转矩,磁通密度,每安培转矩图,PM体积和恒定功率速比值行为,并讨论了温度变化对这些输出参数的影响。这项研究可以帮助设计人员设计此类电动机。

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