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Design of a 48V electric all-wheel-drive system for a hybrid vehicle

机译:用于混合动力车辆的48V电动全轮驱动系统的设计

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This paper proposes an numerical design-optimization procedure for an 48 V induction machine implemented in a hybrid vehicle. Based on the scaling laws of the induction machine, the utilization of the equivalent fuel consumption calculation and the Willans approach an Evolutionary Strategy is used to find the optimum induction machine design. The scaling of the induction machine considers axial and radial scaling as well as rewinding. Furthermore, a change of the gear ratio of the hybrid power train is considered. By using a hybrid vehicle model the optimized induction machines are analyzed due to their consumption savings potential. To define the power distribution of the combustion engine and the 48 V electric machine the equivalent consumption minimization strategy is used.
机译:本文提出了一种在混合动力车辆中实现的48 V电置机的数值设计优化程序。基于感应机的缩放规律,利用等同的燃料消耗计算和WILSANS方法的进化策略用于找到最佳的感应机器设计。感应机的缩放考虑轴向和径向缩放以及倒带。此外,考虑混合动力系的齿轮比的变化。通过使用混合动力汽车模型,由于其消耗节省潜力,分析了优化的感应机器。为了定义内燃机的功率分布和48 V电机使用等效的消耗最小化策略。

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