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Hybrid Power Train with Planetary Transmission Equipped with Clutch-Brake Systems

机译:配备离合器制动器系统的行星传动混合动力系统

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Hybrid power train with planetary transmission equipped with clutch-brake systems, which employ one electric machine, is more effective and more economical than other existing series-parallel hybrid power trains which need two electric machines as motor and generator. This paper presents the control method of zero steady-states electrical energy consumption clutch-brake systems in hybrid power train with planetary transmission. For different functions, the electromagnetically controlled clutch-brake systems in hybrid power train are modified into brake and dual-clutch based on the same basic structure. The control method of such clutch-brake systems as well as other components in hybrid power train is proposed for internal combustion engine starting and gear shifting. The dynamic simulation model of hybrid power train with clutch-brake systems is built in Matlab/Simulink environment. By analyzing the simulation results, the control methods of clutch- brake systems are validated and the proper control are selected to get better performance for ICE starting and gear shifting.
机译:具有采用一台电机的配备有离合器制动系统的行星传动的混合动力总成,比其他现有的需要两台电机作为电动机和发电机的串并联混合动力总成更加有效和经济。本文提出了一种行星传动混合动力总成零稳态电能消耗离合器制动系统的控制方法。针对不同的功能,混合动力总成中的电磁控制离合器-制动器系统基于相同的基本结构被修改为制动器和双离合器。提出了这种离合器-制动系统以及混合动力系中的其他部件的控制方法,用于内燃机的起动和变速。在Matlab / Simulink环境中建立了带有离合器制动系统的混合动力系统的动态仿真模型。通过分析仿真结果,验证了离合器制动系统的控制方法,并选择了适当的控制方法,以使ICE起动和换挡获得更好的性能。

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