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Energy consumption analysis of a novel four-speed dual motor drivetrain for electric vehicles

机译:新型电动汽车四速双电动机传动系统的能耗分析

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摘要

The electric vehicle is becoming increasingly prevalent as a viable option to replace hydrocarbon fuelled vehicles, and as such the development of high efficiency fully electric drivetrains is a particularly relevant research topic. The drivetrain topology is one of the main focuses of research on fully electric drivetrains, because of the variety of available options. For example, the adoption of multiple-speed mechanical transmissions can improve both the performance and energy consumption when compared to a single-speed transmission. A four-speed, dual motor drivetrain design is presented in this article which works on the principle of two double-speed transmissions, each driven by a separate motor linked through a sole secondary shaft. This drivetrain architecture provides increased flexibility of the electric motor operating points, theoretically being beneficial to the overall efficiency of the system for any driving condition. This paper presents the design of the transmission, its governing equations and the method adopted to optimize the state selection map and electric motor torque distribution. A backward-facing energy consumption model is used to compare the results of the four-speed transmission with those of single- and double-speed transmissions for four case study vehicles. © 2012 IEEE.
机译:电动汽车作为替代碳氢燃料汽车的可行选择正变得越来越普遍,因此,高效全电动传动系统的开发是一个特别相关的研究课题。由于可用选项的多样性,传动系统拓扑是全电动传动系统研究的主要重点之一。例如,与单速变速器相比,采用多速机械变速器可以同时提高性能和能耗。本文介绍了一种四速双电动机传动系统设计,该设计基于两个双速变速箱的原理工作,每个变速箱均由通过单独的副轴链接的独立电动机驱动。该传动系统架构可提高电动机工作点的灵活性,从理论上讲,对于任何驾驶条件,都有利于系统的整体效率。本文介绍了变速器的设计,其控制方程式以及用于优化状态选择图和电动机转矩分配的方法。使用后向能耗模型来比较四台案例研究车辆的四速变速器与单速和双速变速器的结果。 ©2012 IEEE。

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