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A Computationally Efficient Design Technique for Electric-Vehicle Traction Machines

机译:电动牵引机的一种高效计算设计技术

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This paper describes a new design technique for electric-vehicle traction machines in order to achieve high efficiency against a defined driving cycle such as the New European Drive Cycle, while satisfying the required torque–speed operating range and other volumetric and thermal design constraints. This paper is undertaken as a part of the Personal Mobility Project funded by the European Union. By analyzing the energy distribution of a given driving cycle, the energy efficiency of the traction machine over the driving cycle can be characterized against a number of representative points, and the design optimization can be carried out with respect to these points. This dramatically reduces the computation time of the design optimization process, while improving the energy efficiency of the traction machines. The utility of the design technique has been illustrated through design case studies and its effectiveness validated by experimental results.
机译:本文介绍了一种用于电动牵引机的新设计技术,目的是在定义的行驶周期(例如新欧洲行驶周期)下实现高效率,同时满足所需的扭矩-转速运行范围以及其他体积和热设计约束。本文是欧盟资助的“个人出行计划”的一部分。通过分析给定行驶周期的能量分布,可以相对于多个代表点来表征牵引机在整个行驶周期内的能量效率,并可以针对这些点进行设计优化。这大大减少了设计优化过程的计算时间,同时提高了牵引机的能源效率。通过设计案例研究说明了该设计技术的实用性,并通过实验结果验证了其有效性。

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