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Dynamic stability of a rider-bicycle system: Analysis and experiments

机译:骑自行车系统的动态稳定性:分析和实验

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Understanding how human balance and control bicycles is helpful for not only designing bicycle-based rehabilitation devices but also studying physical human-machine interactions. We present stability analysis of a rider-bicycle system under the rider's steering and upper-body movement balancing controls. The dynamic model of rider-bicycle system is first constructed to integrate the rider's upper-body movement with the moving platform. We then present a human balance control strategy based on the human riding experiments. The closed-loop system stability is analyzed and discussed. Quantitative influences of the bicycle physical parameters, human control gains and human control time delays are also demonstrated and discussed.
机译:了解人的平衡和控制自行车的方式不仅有助于设计基于自行车的康复设备,而且有助于研究人机交互。我们介绍了在骑手的转向和上身运动平衡控制下的骑手-自行车系统的稳定性分析。首先构建了骑车自行车系统的动态模型,以将骑车人的上身运动与移动平台整合在一起。然后,我们基于人类骑乘实验提出一种人类平衡控制策略。对闭环系统的稳定性进行了分析和讨论。还演示并讨论了自行车物理参数,人为控制增益和人为控制时间延迟的定量影响。

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