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ISG型混合动力系统轴系动力学性能分析 被引量:2
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作者 周久焱 孙逢春 程夕明 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2012年第11期1417-1422,共6页
为了探讨ISG型混合动力系统轴系的动力学性能,建立了包括机电耦合轴、滑动轴承和发动机缸体在内的混合动力系统轴系数学模型,依此模型对混合动力系统动力学性能进行分析,计算了机电耦合轴扭振频率和曲拐应力分布,同时计算了一个工作周... 为了探讨ISG型混合动力系统轴系的动力学性能,建立了包括机电耦合轴、滑动轴承和发动机缸体在内的混合动力系统轴系数学模型,依此模型对混合动力系统动力学性能进行分析,计算了机电耦合轴扭振频率和曲拐应力分布,同时计算了一个工作周期内不同混合动力工况下滑动轴承的偏心率和油膜压力.通过对计算结果的分析表明:机电耦合轴的混合动力改造不会在发动机工作转速内出现扭振共振;混合动力改造后的机电耦合轴强度不满足要求,需要优化设计和重新校核;混合动力工况不会明显影响混合动力系统轴承的偏心率和油膜压力;根据机电耦合轴电机端轴承的油膜压力和偏心率可以优化电机轴承以及电机的选型和设计. 展开更多
关键词 ISG 混合动力 机电耦合轴 滑动 液体动力润滑
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Electromechanical coupling driving control for single-shaft parallel hybrid powertrain 被引量:17
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作者 YANG Chao JIAO XiaoHong +3 位作者 LI Liang ZHANG YaHui ZHANG LiPeng SONG Jian 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第3期541-549,共9页
The single-shaft parallel hybrid powertrain with the automatic mechanical transmission(AMT)is an efficient hybrid driving system in the hybrid electric bus(HEB),while the electromechanical coupling driving control bec... The single-shaft parallel hybrid powertrain with the automatic mechanical transmission(AMT)is an efficient hybrid driving system in the hybrid electric bus(HEB),while the electromechanical coupling driving control becomes a complicated question to find a transient optimal control method to distribute the power between the engine and the electric machine(EM).This paper proposes an innovative control method to deal with the complicated transient coupling driving process of the electromechanical coupling driving system,considering the accelerating condition and the cruising condition mostly in the city driving cycle of HEB.The EM might be operated at driving mode or generating mode to assist the diesel engine to work in its high-efficiency area.Therefore,the adaptive torque tracking controller has been brought forward to ensure that the EM implements the demand torque as well as compensate the torque fluctuation of diesel engine.The d?q axis mathematical model and back stepping method are employed to deduce the adaptive controller and its adaptive laws.Simulation results demonstrate that the proposed control scheme can make the output torque of two power sources respond rapidly to the demand torque from the powertrain in the given driving condition.The proposed method could be adopted in the real control of HEB to improve the efficiency of the hybrid driving system. 展开更多
关键词 single-shaft parallel hybrid powertrain coupling driving control adaptive control torque tracking
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