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摘要:
The non-smooth dynamic model of an unmanned bicycle is established to study the contact-separate and stick-slip non-smooth phenomena between wheels and the ground.According to the Carvallo-Whipple configuration,the unmanned bicycle is reduced to four rigid bodies,namely,rear wheel,rear frame,front fork,and front wheel,which are connected by perfect revolute joints.The interaction between each wheel and the ground is simplified as the normal contact force and the friction force at the contact point,and these forces are described by the Hunt-Crossley contact force model and the LuGre friction force model,respectively.According to the characteristics of flat and curved pavements,calculation methods for contact forces and their generalized forces are presented.The dynamics of the system is modeled by the Lagrange equations of the first kind,a numerical solution algorithm of the dynamic equations is presented,and the Baumgarte stabilization method is used to restrict the drift of the constraints.The correctness of the dynamic model and the numerical algorithm is verified in comparison with the previous studies.The feasibility of the proposed model is demonstrated by simulations under different motion states.
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篇名 Non-smooth dynamic modeling and simulation of an unmanned bicycle on a curved pavement
来源期刊 应用数学和力学(英文版) 学科 物理学
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年,卷(期) 2022,(1) 所属期刊栏目
研究方向 页码范围 93-112
页数 20页 分类号 O313.7
字数 语种 英文
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应用数学和力学(英文版)
月刊
0253-4827
31-1650/O1
16开
上海市上大路99号
1980
eng
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3175
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