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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part K, Journal of Multi-body Dynamics >Dynamics modeling and analysis of a four-wheel independent motor-drive virtual-track train
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Dynamics modeling and analysis of a four-wheel independent motor-drive virtual-track train

机译:四轮独立电动驱动虚拟轨道列车动力学建模与分析

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摘要

Due to urbanisation and the economic challenges of traffic, it is urgently necessary to develop an environmentally friendly virtual-track train with suitable speed, high load capacity and low construction cost in China. To guide the design and evaluate this train's dynamic behaviour, a spatial-dynamics model has been developed based on the dynamics theory and tyre-road interaction. The proposed dynamics model comprises mechanical vehicle systems, traction and braking characteristics and tyre-road dynamic interactions. The coupling effects amongst those systems of virtual track train are derived theoretically for the first time. The nonlinear characteristics of the tyre are modelled by the transit tyre-magic formula with consideration of road irregularities. Based on a designed PID controller and the comprehensive dynamics model, the dynamic performance of the system can be revealed considering motion coupling effects and complicated excitations, especially under traction and braking conditions. The dynamic responses of whole virtual track train can be obtained by numerical integration under different conditions. The vibration characteristics of such train are assessed under running at a constant speed and during the traction/braking process. The results show that the vibrations of the vehicle system are significantly influenced by road irregularities, especially at high speed ranges. The motions and vibrations of different components are intensive coupled, which should not to be neglected in the dynamics assessment of the virtual track train. Besides, the dynamics model can also be applied to dynamics-related assessment (fatigue, strength and some damage conditions, et al.) and parameter optimisation of the virtual-track train.
机译:由于城市化和交通的经济挑战,迫切需要开发一种以适当的速度,高负荷能力和中国施工成本低的环保虚拟轨道火车。为了指导设计和评估该火车的动态行为,基于动态理论和轮胎道路交互开发了一种空间动力学模型。所提出的动力学模型包括机械车辆系统,牵引力和制动特性和轮胎道路动态相互作用。第一次从理论上导出那些虚拟轨道列车系统之间的耦合效果。轮胎的非线性特性是通过考虑道路不规则的过境轮胎魔法公式而建模的。基于设计的PID控制器和综合动力学模型,考虑到运动耦合效果和复杂激励,尤其可以揭示系统的动态性能,尤其是在牵引力和制动条件下。通过不同条件下的数值集成可以获得整个虚拟轨道列车的动态响应。在恒定速度和牵引/制动过程期间,在运行下进行这种列车的振动特性。结果表明,车辆系统的振动受到道路违规的显着影响,特别是在高速范围内。不同组件的动作和振动是密集的耦合,在虚拟轨道列车的动态评估中不应忽略。此外,动力学模型也可以应用于与动力学相关的评估(疲劳,强度和一些损伤条件等,等)和虚拟轨道列车的参数优化。

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