首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Analysis and simulation of the gearshift methodology for a novel two-speed transmission system for electric powertrains with a central motor
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Analysis and simulation of the gearshift methodology for a novel two-speed transmission system for electric powertrains with a central motor

机译:新型带中央电动机的电动传动系统的二速传动系统的变速方法分析和仿真

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摘要

Electric vehicle powertrains traditionally consist of a central electric motor drive, a single-speed transmission and a differential. This electric powertrain layout, for use in either fully electric vehicles or through-the-road parallel hybrid electric vehicles, will be extensively adopted in the next few years, despite the ongoing research in electric vehicles with individually controlled motors. However, current research suggests that electric powertrains with a central electric motor drive can still be widely improved. For example, the installation of a seamless multiple-speed transmission instead of a single-speed transmission can cause an increase in the vehicle performance, together with an enhancement in the overall efficiency of the electric powertrain. These novel transmission systems for electric powertrains require a specific design, in order to be efficient, compact, easy and robust to control and cheap to manufacture. This article presents the mechanical layout and the control system of a novel two-speed transmission system designed by the present authors, with particular focus on the achievement of optimal gearshift dynamics. The torque characteristics of typical electric motor drives require a different actuation of the seamless gearshifts, in comparison with the equivalent operation for a dual-clutch transmission within a powertrain driven by an internal combustion engine.
机译:电动汽车的动力总成传统上由中央电动机驱动器,单速变速器和差速器组成。尽管正在对带有独立控制电机的电动汽车进行研究,但这种电动动力总成布局既可用于全电动汽车,也可用于道路并行混合动力电动汽车,但在未来几年仍将被广泛采用。但是,目前的研究表明,带有中央电动机驱动器的电动动力总成仍可得到广泛改进。例如,安装无缝的多速变速器而不是单速变速器可以导致车辆性能的提高,以及电动动力总成的整体效率的提高。这些用于电力传动系统的新颖的传动系统需要特定的设计,以便高效,紧凑,易于控制,易于制造且制造便宜。本文介绍了本作者设计的新型两速变速系统的机械布局和控制系统,特别着重于实现最佳变速动力学。与用于由内燃发动机驱动的动力总成中的双离合器变速器的等效操作相比,典型的电动机驱动器的转矩特性要求无缝换档的不同致动。

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