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首页> 外文期刊>Fortschritte der Physik >Energy-Efficient Torque-Vectoring Control of Electric Vehicles With Multiple Drivetrains
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Energy-Efficient Torque-Vectoring Control of Electric Vehicles With Multiple Drivetrains

机译:具有多种动脉的电动车辆的节能扭矩矢量控制

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摘要

The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are well known and extensively discussed in the literature. Also, several authors analyze wheel torque control allocation algorithms for reducing the energy consumption while obtaining the wheel torque demand and reference yaw moment specified by the higher layer of a torque-vectoring controller. Based on a set of novel experimental results, this study demonstrates that further significant energy consumption reductions can be achieved through the appropriate tuning of the reference understeer characteristics. The effects of drive-train power losses and tire slip power losses are discussed for the case of identical drivetrains at the four vehicle corners. Easily implementable yet effective rule-based algorithms are presented for the set-up of the energy-efficient reference yaw rate, feedforward yaw moment and wheel torque distribution of the torque-vectoring controller.
机译:扭矩 - 矢量控制具有多种动脉的电动车辆的安全益处是在文献中众所周知的和广泛讨论的。 此外,一些作者分析车轮扭矩控制分配算法,用于降低能量消耗,同时获得由扭矩矢量控制器的较高层指定的车轮扭矩需求和参考横摆力矩。 基于一组新颖的实验结果,本研究表明,通过适当调整参考转向的特征,可以实现进一步显着的能量消耗。 对于四车辆角落的相同动机的情况讨论了驱动列车动力损耗和轮胎滑动功率损耗的影响。 为了设置扭矩矢量控制器的馈电横摆率,馈电横摆力矩和车轮扭矩分布,易于实现的基于规则的基于规则的算法。

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