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Multidisciplinary Design of a Permanent-Magnet Traction Motor for a Hybrid Bus Taking the Load Cycle into Account

机译:考虑负载循环的混合动力公交车永磁牵引电动机的多学科设计

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摘要

An electrical and mechanical design process for a traction motor in a hybrid bus application is studied. Usually, the design process of an electric machine calls for close cooperation between various engineering disciplines. Compromises may be required to satisfy the boundary conditions of electrical, thermal, and mechanical performances. From the mechanical point of view, the stress values and the safety factors should be at a reasonable level and the construction lifetime predicted by a fatigue analysis. In a vehicle application, the motor has to be capable of generating high torque when accelerating, and in normal operation, the losses of the machine should be low to be able to cool the machine. Minimization of the no-load iron losses becomes a very important electrical design requirement if the traction motor and the generator are mechanically connected with an internal combustion engine when it is operating as the only source of torque. The manufacturing costs of the motor are also taken into account in this paper.
机译:研究了混合动力客车应用中牵引电机的电气和机械设计过程。通常,电机的设计过程需要各个工程学科之间的紧密合作。可能需要妥协才能满足电气,热和机械性能的边界条件。从机械角度来看,应力值和安全系数应处于合理水平,并且应通过疲劳分析来预测施工寿命。在车辆应用中,电动机必须在加速时能够产生高扭矩,并且在正常操作中,机器的损耗应较低,以便能够冷却机器。如果牵引电动机和发电机在作为唯一扭矩源运行时与内燃机机械连接,则最小化空载铁损就成为一项非常重要的电气设计要求。本文还考虑了电动机的制造成本。

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