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Design Optimization of a Surface-Mounted Permanent-Magnet Motor With Concentrated Windings for Electric Vehicle Applications

机译:电动汽车用集中绕组表面安装永磁电动机的设计优化

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摘要

This paper describes design techniques for electric vehicle (EV) traction machines to achieve high efficiency against a defined driving cycle such as the New European Drive Cycle (NEDC) while satisfying the required torque-speed operating range. A fractional-slot concentrated-winding (FSCW) surface-mounted permanent-magnet (SPM) machine has been identified as a suitable candidate for EV applications due to its high power/torque density, high efficiency, and good flux-weakening capability compared with other competing machine topologies. Based on the vehicle characteristics and the reference driving cycle, the motor specifications are established, and the design constraints for the SPM machine to satisfy the peak torque and flux-weakening capabilities are derived. Furthermore, the influence of the key parameters, such as slot-pole number combination, machine inductance, axial length, and number of turns, on the machine copper and iron losses over the NEDC is evaluated. Optimizations were carried for these parameters to minimize the total energy losses over the driving cycle. It has been shown that conventional design methodologies that aim to maximize efficiency in the region close to the rated operating condition may lead to less optimal designs and higher energy losses over the NEDC. A prototype motor for a front- and rear-wheel-driven EV has been designed, manufactured, and tested. The experimental results validate the proposed design methodology.
机译:本文介绍了电动汽车(EV)牵引机的设计技术,该技术可在规定的行驶周期(例如新欧洲行驶周期(NEDC))下实现高效率,同时满足所需的转矩-速度运行范围。分数槽集中绕组(FSCW)表面安装式永磁(SPM)机器由于具有较高的功率/转矩密度,高效率和良好的弱磁通能力,已被确定为EV应用的合适候选者。其他竞争机器拓扑。根据车辆特性和参考驾驶周期,确定电动机规格,并推导SPM电机满足峰值转矩和弱磁通能力的设计约束。此外,评估了关键参数(例如槽极数组合,电机电感,轴向长度和匝数)对NEDC上电机铜和铁损的影响。对这些参数进行了优化,以最大程度减少整个驾驶循环中的总能量损失。已经显示出,旨在使接近额定工作条件的区域中的效率最大化的常规设计方法可能导致较不理想的设计和整个NEDC上更高的能量损耗。用于前轮和后轮电动汽车的原型电机已经过设计,制造和测试。实验结果验证了所提出的设计方法。

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