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On the Investigation of Energy Efficient Torque Distribution Strategies through a Comprehensive Powertrain Model

机译:通过全面动力制模型研究节能扭矩分布策略

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摘要

In electric vehicles with multiple motors, the torque at each wheel can be controlled independently, offering significant opportunities for enhancing vehicle dynamics behaviour and system efficiency. This paper investigates energy efficient torque distribution strategies for improving the operational efficiency of electric vehicles with multiple motors. The proposed strategies are based on the minimisation of power losses, considering the powertrain efficiency characteristics, and are easily implementable in real-time. A longitudinal dynamics vehicle model is developed in Simulink/Simscape environment, including energy models for the electrical machines, the converter, and the energy storage system. The energy efficient torque distribution strategies are compared with simple distribution schemes under different standardised driving cycles. The effect of the different strategies on the powertrain elements, such as the electric machine and the energy storage system, are analysed. Simulation results show that the optimal torque distribution strategies provide a reduction in energy consumption of up to 5.5% for the case-study vehicle compared to simple distribution strategies, also benefiting the battery state of charge.
机译:在具有多个电动机的电动车辆中,可以独立地控制每个车轮的扭矩,为提高车辆动力学行为和系统效率提供了重要的机会。本文研究了能量有效的扭矩分布策略,用于提高多个电动机的电动汽车运营效率。考虑动力总成效率特性,拟议的策略基于功率损耗的最小化,并且很容易实时可实现。纵向动力学车辆模型是在Simulink / Simscape环境中开发的,包括电机,转换器和能量存储系统的能量模型。在不同标准化驱动周期下的简单分配方案进行了节能扭矩分布策略。分析了不同策略对动力总成元件的影响,例如电机和能量存储系统。仿真结果表明,与简单的分布策略相比,最优扭矩分布策略可降低案例研究车辆的能耗高达5.5%,也有利于电池充电状态。

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