• CN:11-2187/TH
  • ISSN:0577-6686

›› 2011, Vol. 47 ›› Issue (23): 97-103.

• 论文 • 上一篇    下一篇

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月球车沙地行驶动力学建模与仿真

马传帅;文桂林;周景宇;韩汪利;戴意愿   

  1. 湖南大学汽车车身先进设计与制造国家重点实验室;湖南大学特种装备先进设计技术与仿真教育部重点实验室
  • 发布日期:2011-12-05

Whole-vehicle Dynamical Model and Simulation for Lunar Rover Traveling on the Loose Soil

MA Chuanshuai;WEN Guilin;ZHOU Jingyu;HAN Wangli;DAI Yiyuan   

  1. State Key Laboratory of Advanced Design and Manufacture for Vehicle Body, Hunan University Key Laboratory of Advanced Design and Simulation Techniques for Special Equipment of Ministry of Education, Hunan University
  • Published:2011-12-05

摘要: 提出建立刚性车轮在松软路面行驶的动力学模型的新方法。该方法对车轮进行离散化处理,基于沉陷理论、剪切理论和被动土压理论预测轮壤接触表面的相互作用力,从而可以对车轮表面的应力分布以及电动机转矩进行分析。进一步地将子模型整合到主副摇臂月球车悬架系统中,建立在松软干砂表面行驶的动力学模型。通过仿真,对移动系统中各个车轮表面的应力分布以及驱动电动机转矩进行分析。为验证模型的正确性,开发了信号处理模块和主副摇臂移动系统试验平台,开展主副摇臂月球车移动系统在干沙表面的移动性能试验研究,对仿真和试验中的车轮功耗以及滑移率进行比较。结果表明主副摇臂移动系统动力学模型具有较好的可信性,该建模方法可以用于高效率的多轮多轴月球车的动力学分析。

关键词: 轮壤模型, 移动性能, 有齿刚性轮, 月球车

Abstract: Based on the sinkage-pressure theory, the stress-displacement relationship and the theory of passive earth pressure, the dynamical wheel–soil interaction model is built to simulate the interactive behavior between the wheel with grousers and dry-sand soil, the stress distribution and torques of the wheels can be predicted using this model. Integrating the sub-model with rocker-bogie suspensions of the lunar rover, the dynamical model of the mobility system is developed to investigate the off-road performance including the distribution of the stress acting on the interface between the wheels and soil and torque of the wheel while the rover travels on the loose soil. In order to valid this model, the test bed of the rocker-bogie mobility system and single processing are developed. The accuracy and reliability of the model are verified by some experiments. The comparison between the measured results and simulation results indicates that this model is validated and can be used to investigate the performance of the multi-wheel rover traveling on the loose soil.

Key words: Lunar rover, Mobility system, Wheel with grousers, Wheel-soil model

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