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The Engine Clutch Engagement Control for Hybrid Electric Vehicles

机译:混合动力汽车的发动机离合器啮合控制

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In this paper, an engine clutch engagement control for hybrid electric vehicles (HEVs) with a transmission mounted electric device (TMED) will be dealt with. In general, the engine of the HEVs repeatedly turns on and off in even one driving cycle, and when the engine turns on, the fast synchronization of the engine speed and the motor speed which is equal to the transmission input speed is very important to transfer the engine power to the driving wheel without a shock during the engagement for better fuel economy and drivability feeling. A hybrid starter generator (HSG) at HEVs is connected into the engine by a pulley, and the engine speed can be controlled by the HSG. When the engine starts to turn on, the engine torque is very unstable, and unpredictable and then the control of the engine speed by HSG is very difficult. The suggested method consists of a disturbance observer and a tracking controller which is composed of a feedback control and a feedforward control. The disturbance observer estimates and compensates a model uncertainty and disturbances such as an engine torque, a friction torque, and so on. The feedback and feedforward control are used for the engine speed to follow a target speed. Then the suggested method is very robust to the model uncertainty, and the disturbances, and then the fast engagement of the engine clutch without a shock is possible. For the effectiveness of the suggested method, the experimental results by TMED HEVs are shown.
机译:在本文中,将处理带有变速箱安装式电动装置(TMED)的混合动力电动汽车(HEV)的发动机离合器接合控制。通常,HEV的发动机甚至在一个驾驶周期内反复开启和关闭,并且当发动机开启时,发动机速度和等于变速箱输入速度的电动机速度的快速同步对于变速非常重要。在接合过程中,发动机对驱动轮的动力不会受到冲击,从而具有更好的燃油经济性和驾驶感觉。 HEV处的混合动力起动发电机(HSG)通过皮带轮连接到发动机,发动机转速可以通过HSG控制。当发动机开始启动时,发动机扭矩非常不稳定且不可预测,因此很难通过HSG控制发动机转速。所建议的方法由干扰观测器和跟踪控制器组成,跟踪控制器由反馈控制和前馈控制组成。干扰观测器估计并补偿模型不确定性和干扰,例如发动机扭矩,摩擦扭矩等。反馈和前馈控制用于使发动机转速跟随目标转速。然后,所提出的方法对于模型不确定性和扰动非常鲁棒,因此可以使发动机离合器快速接合而不会产生冲击。为了提高建议方法的有效性,显示了TMED HEV的实验结果。

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