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A hub motors choice strategy for an electric four independent wheel drive vehicle

机译:电动四轮独立驱动汽车的轮毂电机选择策略

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Electric vehicles represent a valid solution to solve the air pollution problem. The typical propulsion system of an electric vehicle includes a high speed-low torque electric motor combined with some mechanical parts, such as gearbox, transmission and differential. The indirect coupling between driving wheels and engine allows the electric motor to work close to its maximum operative efficiency point. A different traction system is based on using a hub motor for each wheel drive instead of a single high speed-low torque motor. This allows removing all the mechanical transmission components, reducing weight and increasing space saving. However, in this configuration the hub motor works on all its operating range, affecting adversely the efficiency. The aim of this paper is to analyze efficiency, weight, and cost of different propulsion systems of an electric car designed principally for the urban mobility. The propulsion system is based on hub motors, and two- and four-wheel drive configurations are either evaluated. Furthermore, in the case of the four-wheel drive, configurations with equal or different hub motor features are analysed. The main results of this study points out that hybrid configurations have better performance with respect to the two-wheel drive or the homogenous four-wheel drive solutions.
机译:电动汽车是解决空气污染问题的有效解决方案。电动车辆的典型推进系统包括结合了一些机械零件(例如变速箱,变速箱和差速器)的高速-低扭矩电动机。驱动轮和发动机之间的间接联接使电动机能够在其最大工作效率点附近工作。不同的牵引系统基于对每个车轮驱动器使用轮毂马达,而不是单个高速低扭矩马达。这允许移除所有机械传动部件,减轻重量并增加空间节省。但是,在这种配置下,轮毂电机在其所有工作范围内都工作,从而对效率产生不利影响。本文的目的是分析主要为城市交通而设计的电动汽车不同推进系统的效率,重量和成本。推进系统基于轮毂电机,并且评估了两轮和四轮驱动配置。此外,在四轮驱动的情况下,分析具有相同或不同轮毂电机特征的配置。这项研究的主要结果指出,相对于两轮驱动或同质四轮驱动解决方案,混合动力配置具有更好的性能。

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