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Efficiency Study of a Dual-Motor Coupling EV Powertrain

机译:双电机耦合电动汽车动力总成的效率研究

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摘要

A novel dual-motor coupling powertrain (DMCP) with speed and torque coupling is proposed. In this powertrain, a planetary gear unit couples the speed of two motors, and another shaft-fixed gear unit couples the torque of two motors. By means of integrated control, the electric motors, synchronizer, and clutches, the DMCP can operate in four modes to satisfy the demands of different running conditions, thereby improving the energy utilization efficiency. In this paper, the operating principles of the DMCP in various modes are analyzed, and the instantaneous overall efficiency is optimized based on the vehicle longitudinal kinetic theory. Moreover, this paper formulates the optimal mode shift strategy and the power split strategy of the DMCP, and a detailed dual-motor electric vehicle (EV) model is developed in the MATLAB/Simulink environment. The simulation result indicates that, compared with the normal single-motor two-speed powertrain, the DMCP can effectively improve the energy utilization efficiency of the EV and extends the EV's driving range.
机译:提出了一种新型的具有速度和转矩耦合的双电机耦合动力总成(DMCP)。在该动力总成中,行星齿轮箱耦合两个电动机的速度,另一个轴固定齿轮箱耦合两个电动机的扭矩。通过集成控制,电动机,同步器和离合器,DMCP可以在四种模式下运行,以满足不同运行条件的需求,从而提高了能源利用效率。本文分析了DMCP在各种模式下的工作原理,并基于车辆纵向动力学理论优化了瞬时总效率。此外,本文制定了DMCP的最佳模式转换策略和功率分配策略,并在MATLAB / Simulink环境中开发了详细的双电机电动汽车(EV)模型。仿真结果表明,与常规的单电机两速动力总成相比,DMCP可以有效提高电动汽车的能量利用效率,并扩大电动汽车的行驶里程。

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