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Stability control of a dual-motor vehicle based on coordinated application of motor and hydraulic actuator

机译:基于电机和液压执行器的双机动车辆的稳定性控制

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The paper studies an electric vehicle with two driving motors connected to both front wheels independently. The character of individual control of the motors can generate the yaw moment to improve the active safety performance like the function of Electric Stability Programming (ESP). The paper proposes to provide the braking torque by the individual motor together with the hydraulic system of the ESP unit to satisfy the desired yaw moment. First, a dynamic vehicle model with nonlinear tire is established. Then a two-layer control structure of the yaw stability is given to produce the yaw moment and coordinate the motor torque and the hydraulic pressure. The simulation including the single lane change and slalom maneuver is conducted to validate the proposed method. The results show that the motors can assist the ESP to realize the yaw stability and also save the energy.
机译:本文研究了一种电动车辆,其两个驱动电机独立地连接到两个前轮。 电机的各个控制的特征可以产生偏航时刻,以提高电动安全性能,如电稳定性编程(ESP)的功能。 本文提出将各个电动机的制动扭矩与ESP单元的液压系统一起提供,以满足所需的横摆力矩。 首先,建立具有非线性轮胎的动态车型。 然后,给出了偏航稳定性的双层控制结构以产生横摆力矩并坐标电动机扭矩和液压。 进行了包括单车道变化和障碍垫机动的仿真以验证所提出的方法。 结果表明,电机可以帮助ESP实现偏航稳定性,并节省能量。

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