首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Reducing the motor power losses of a four-wheel drive, fully electric vehicle via wheel torque allocation
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Reducing the motor power losses of a four-wheel drive, fully electric vehicle via wheel torque allocation

机译:通过分配车轮扭矩来减少四轮驱动全电动汽车的电机功率损耗

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摘要

Individually controlled electric motors provide opportunities for enhancing the handling characteristics and the energy efficiency of fully electric vehicles. Online power loss minimisation schemes based on the electric motor efficiency data may, however, be impractical for real-time implementation owing to the heavy computational demand. In this paper, the optimal wheel torque distribution for minimal power losses from the electric motor drives is evaluated in an offline optimisation procedure and then approximated using a simple function for online control allocation. The wheel torque allocation scheme is evaluated via a simulation approach incorporating straight-ahead driving at a constant speed, a ramp manoeuvre and a sequence of step steer manoeuvres. The energy-efficient wheel torque allocation scheme provides motor power loss reductions and yields savings in the total power utilisation compared with a simpler method in which the torques are evenly distributed across the four wheels. The method does not rely on complex online optimisation and can be applied on real electric vehicles in order to improve the efficiency and thus to reduce power consumption during different manoeuvres.
机译:独立控制的电动机为增强全电动汽车的操纵特性和能效提供了机会。然而,由于大量的计算需求,基于电动机效率数据的在线功率损耗最小化方案对于实时实施可能是不切实际的。在本文中,通过离线优化程序评估了最小的电动机驱动器功率损耗的最佳车轮扭矩分配,然后使用简单的函数对在线控制分配进行了估算。车轮扭矩分配方案通过模拟方法进行评估,该方法结合了以恒定速度进行的直行驾驶,坡道操纵和一系列的逐步转向操纵。与将扭矩均匀分布在四个车轮上的简单方法相比,节能车轮扭矩分配方案可降低电动机的功率损耗并节省总功率。该方法不依赖复杂的在线优化,而是可以应用于实际的电动汽车,以提高效率,从而减少不同操作期间的功耗。

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