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Multibody dynamics simulation of an all-wheel-drive motorcycle for handling and energy efficiency investigations

机译:用于处理和能效研究的全轮驱动摩托车的多体动力学仿真

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摘要

It is now possible, through electrical, hydraulic or mechanical means, to power the front wheel of a motorcycle. The aim of this is often to improve performance in limit-handling scenarios including off-road low-traction conditions and on-road high-speed cornering. Following on from research into active torque distribution in 4-wheeled vehicles, the possibility exists for efficiency improvements to be realised by reducing the total amount of energy dissipated as slip at the wheel–road contact. This paper presents the results of an investigation into the effect that varying the torque distribution ratio has on the energy consumption of the two-wheeled vehicle. A 13-degree of freedom multibody model was created, which includes the effects of suspension, aerodynamics and gyroscopic bodies. SimMechanics, from the MathWorks_, is used for automatic generation of equations of motion and time-domain simulation, in conjunction with MATLAB and Simulink. A simple driver model is used to control the speed and yaw rate of the motorcycle. The handling characteristics of the motorcycle are quantitatively analysed, and the impact of torque distribution on energy consumption is considered during straight line and cornering situations. The investigation has shown that only a small improvement in efficiency can be made by transferring a portion of the drive torque to the front wheel. Tyre longevity could be improved by reduced slip energy dissipation.
机译:现在,可以通过电气,液压或机械方式为摩托车的前轮提供动力。这样做的目的通常是为了提高极限处理场景中的性能,包括越野低牵引力条件和公路高速转弯。在研究了四轮车辆的主动扭矩分配之后,存在着通过减少在车轮与路面接触处打滑而耗散的能量总量来实现效率提高的可能性。本文介绍了调查结果,研究了改变扭矩分配比对两轮车能耗的影响。创建了一个13自由度的多体模型,其中包括悬架,空气动力学和陀螺仪体的影响。来自MathWorks_的SimMechanics与MATLAB和Simulink一起用于自动生成运动方程和时域仿真。一个简单的驾驶员模型用于控制摩托车的速度和偏航率。定量分析了摩托车的操纵特性,并在直线和转弯情况下考虑了扭矩分配对能量消耗的影响。研究表明,通过将一部分驱动扭矩传递到前轮上,效率只能得到很小的提高。减少轮胎的能量耗散可以提高轮胎的使用寿命。

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  • 作者

    Griffin, J.W.; Popov, A.A.;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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