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Optimal design and implementation of a drivetrain for an ultra-light electric vehicle

机译:用于超轻型电动车辆的动力传动系统的优化设计和实施

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摘要

This paper presents an integrated design of a drivetrain for a single-person ultra-light electric vehicle (ULEV). To calculate losses and efficiency of the inverter, the permanent magnet synchronous machines (PMSMs) and the gearbox, parameterised analytical models are used. For the gearbox - which has a single gear ratio - the studied parameters are the gear ratio, the number of stages, the number of teeth and the module of each spur gear combination. The novelty of the paper is that it learns how the total average efficiency and the total mass of the drivetrain depend on the gear ratio, on the number of stages in the gearbox, on the motor parameters and on the chosen several driving cycles including the new European driving cycle (NEDC). On the basis of the presented results, it is possible to choose the right configuration of power electronics, PMSM and gearbox in order to have a good trade-off between high efficiency and low mass.
机译:本文提出了一种用于单人超轻型电动汽车(ULEV)的传动系统的集成设计。为了计算逆变器,永磁同步电机(PMSM)和变速箱的损耗和效率,使用了参数化分析模型。对于具有单个齿轮比的齿轮箱,研究的参数是齿轮比,级数,齿数和每个正齿轮组合的模块。该论文的新颖之处在于,它了解了传动系统的总平均效率和总质量如何取决于齿轮比,齿轮箱的级数,电动机参数以及所选的几个驱动循环,包括新的欧洲行驶周期(NEDC)。根据给出的结果,可以选择功率电子设备,PMSM和变速箱的正确配置,以便在高效率和低质量之间取得良好的平衡。

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