节点文献
六轮移动机器人运动学建模与仿真
Kinematics modeling and simulation of a six wheeled mobile robot
【摘要】 针对石化行业的需求,设计了一款具有较强运动灵活性的适合在狭小空间、复杂环境中工作的六轮移动机器人。采用4个全向轮与两个普通橡胶车轮混搭的车轮配置方案,建立机器人的运动学模型,并分析了车轮的运动参数与机器人本体位姿之间的关系;运用ADAMS仿真软件构建了机器人的仿真模型,通过对直线行驶、原地转向性能进行运动学仿真,得到了机器人的运动学曲线,验证了运动学理论模型的正确性和机器人机构设计的合理性。原地转向误差实验表明,机器人具有较强的原地转向能力,原地转向最小误差可达到2.299mm,较好地满足了该机器人的高灵活性需求。
【Abstract】 To meet the needs of the petrochemical industry,a six wheeled mobile robot with strong flexibility and the ability to work in narrow space and complex environments was designed.The kinematics model of the robot was set up by using the wheel configuration of mixing four omnidirectional wheels with two ordinary rubber wheels,and the relationship between the wheel moving parameters and the position appearance of the robot was analyzed,The ADAMS software was adopted to build the simulation model of the robot,and through the kinematics simulation of the performance of linear driving and pivot steering,the robot’s kinematics curve was obtained,thus the correctness of the kinematic model and the rationality of the robots’ mechanism design were verified.The results of the on situ steering error experiment showed the robot’s strong ability to place steering.Its minimum error reached 2.299 mm,meeting the needs of the robot’s high flexibility.
【Key words】 six wheeled mobile robot; kinematic model; kinematics simulation; in situ steering error experiment;
- 【文献出处】 高技术通讯 ,Chinese High Technology Letters , 编辑部邮箱 ,2017年02期
- 【分类号】TP242
- 【被引频次】12
- 【下载频次】603