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Research of 6-DOF Serial-Parallel Mechanism Platform for Stability Training of Legged-Walking Robot 被引量:1
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作者 Wei-Guo Wu Wen-Qian Du 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2014年第2期75-82,共8页
The concept of legged-robot stability training with a training platform is proposed and a serial-parallel mechanism platform with 6 degrees of freedom is designed for this target. The designed platform is composed of ... The concept of legged-robot stability training with a training platform is proposed and a serial-parallel mechanism platform with 6 degrees of freedom is designed for this target. The designed platform is composed of 4-DOF parallel mechanism with spherical joints and prismatic pairs,and 2-DOF serial mechanism with prismatic pairs. With this design,the platform has advantages of low platform countertop,big workspace,high carrying capacity and high stiffness. On the basis of DOF analysis and computation of space mechanism,weight supporting auxiliary mechanism and raceways-balls supporting mechanism are designed,so as to improve the stiffness of designed large platform and payload capacity of servo motors. And then the whole structure design work of the platform is done. Meanwhile,this paper derives the analytical solutions of forward kinematics, inverse kinematics and inverse dynamics. The error analysis model of position and orientation is established. And then the simulation is done in ADAMS to ensure the correctness and feasibility of this design. 展开更多
关键词 6-dof serial-parallel mechanism forward kinematics stability training legged-walking robot
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Micro-Scale Motion Precision Simulation Method for a New-Type 6-DOF Micro-Manipulation Robot
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作者 叶鑫 张之敬 王豫枢 《Journal of Beijing Institute of Technology》 EI CAS 2007年第4期414-418,共5页
A new 6-DOF micro-manipulation robot based on 3-PPTTRS parallel mechanisms in combination with flexure hinges is proposed. The design principle of the mechanism is introduced, and the kinematics analysis method based ... A new 6-DOF micro-manipulation robot based on 3-PPTTRS parallel mechanisms in combination with flexure hinges is proposed. The design principle of the mechanism is introduced, and the kinematics analysis method based on differentiation is used to get the (inverse) kinematics equations. Then a micro-scale motion precision simulation method is proposed according to finite element analysis (FEA), and the prediction of robot’s motion precision in design phase is realized. The simulation result indicates that the 6-DOF micro-manipulation robot can meet the design specification. 展开更多
关键词 MICRO-SCALE 6-dof micro-manipulation robot kinematics characteristic motion precision simulation
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Trajectory tracking control based on linear active disturbance rejection controller for 6-DOF robot manipulator
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作者 Qiao Guanyu Peng Cheng +1 位作者 Xu Zhenbang Gao Huibin 《High Technology Letters》 EI CAS 2019年第4期347-354,共8页
The trajectory tracking control for a 6-DOF robot manipulator with multiple inputs and outputs,non-linearity and strong coupling is studied.Firstly,a dynamical model for the 6-DOF robot manipulator is designed.From th... The trajectory tracking control for a 6-DOF robot manipulator with multiple inputs and outputs,non-linearity and strong coupling is studied.Firstly,a dynamical model for the 6-DOF robot manipulator is designed.From the view point of practical engineering,considering the model uncertainties and external disturbances,the robot manipulator is divided into 6 independent joint subsystems,and a linear active disturbance rejection controller(LADRC)is developed to track trajectory for each subsystem respectively.LADRC has few parameters that are easy to be adjusted in engineering.Linear expansion state observer(LESO)as the uncertainty observer is able to estimate the general uncertainties effectively.Eventually,the validity and robustness of the proposed method adopted in 6-DOF robot manipulator are demonstrated via numerical simulations and 6-DOF robot manipulator experiments,which is of practical value in engineering application. 展开更多
关键词 6-dof robot manipulator linear active disturbance rejection controller(LADRC) linear expansion state observer(LESO) trajectory tracking control
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6自由度喷涂机器人的运动学分析与仿真 被引量:8
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作者 曾华森 谢存禧 +1 位作者 吴向垒 张铁 《微计算机信息》 北大核心 2008年第26期177-178,35,共3页
运用回转变换张量法建立了6自由度喷涂机器人的运动学模型,并利用消元法简化了运动学逆解的求解过程,得出了较为简易的解析解。利用ADAMS软件建立了机器人的虚拟样机模型,并进行运动仿真分析,不仅证明了运动学模型的正确性,也为后续研... 运用回转变换张量法建立了6自由度喷涂机器人的运动学模型,并利用消元法简化了运动学逆解的求解过程,得出了较为简易的解析解。利用ADAMS软件建立了机器人的虚拟样机模型,并进行运动仿真分析,不仅证明了运动学模型的正确性,也为后续研究奠定了基础。 展开更多
关键词 6自由度喷涂机器人 回转变换张量法 运动学模型 ADAMS
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基于ANSYS Workbench的喷涂机器人的模态分析 被引量:10
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作者 陈勇武 《现代机械》 2011年第2期44-46,共3页
分别利用Pro/E和ANSYS Workbench软件对6自由度喷涂机器人进行三维实体建模与模态分析,并获取了相应的6阶固有特性参数,找到了结构的振动薄弱部位。避免了共振的产生,为结构的改进提供了可靠的参考依据。
关键词 6自由度喷涂机器人 ANSYS WORKBENCH 模态分析 有限元法
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基于时间-冲击的喷胶机器人轨迹优化算法 被引量:2
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作者 胡俊辉 孙博 +2 位作者 孟婥 张豪 孙以泽 《东华大学学报(自然科学版)》 CAS 北大核心 2022年第1期72-78,共7页
针对喷胶机器人时间-冲击等多目标优化的轨迹规划问题,提出基于时间-冲击最优的轨迹优化算法,优化喷胶机器人的运行时间和冲击(加加速度)两个效果相反的目标。采用4-5-6多项式插值曲线作为关节空间内的插值轨迹,确保机器人运动的连续性... 针对喷胶机器人时间-冲击等多目标优化的轨迹规划问题,提出基于时间-冲击最优的轨迹优化算法,优化喷胶机器人的运行时间和冲击(加加速度)两个效果相反的目标。采用4-5-6多项式插值曲线作为关节空间内的插值轨迹,确保机器人运动的连续性和平稳性;在关节角速度、角加速度和角加加速度的运动学约束下,利用多目标粒子群优化(multi-objective particle swarm optimization,MOPSO)算法,以喷胶机器人的运行时间和冲击为目标对其进行轨迹优化。仿真结果表明,采用MOPSO算法对4-5-6分段多项式插值结果进行优化,提高了机器人的轨迹精度,减少了机器人运动过程中的冲击,有效缩短了机器人的作业时间。 展开更多
关键词 喷胶机器人 轨迹优化 4-5-6多项式插值 时间-冲击 多目标粒子群优化算法
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基于ADAMS的新型喷涂机器人的运动学仿真 被引量:2
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作者 周其凤 邹国军 《现代机械》 2011年第1期37-39,51,共4页
通过D_H法建立六自由度喷涂机器人运动学方程,在这个的基础上利用Matlab软件绘制出整个机器人的工作空间。同时运用ADAMS建立了喷涂机器人的虚拟样机模型,不仅直观地证明了所建立的运动学模型的正确性,更为以后的机器人动力学分析、轨... 通过D_H法建立六自由度喷涂机器人运动学方程,在这个的基础上利用Matlab软件绘制出整个机器人的工作空间。同时运用ADAMS建立了喷涂机器人的虚拟样机模型,不仅直观地证明了所建立的运动学模型的正确性,更为以后的机器人动力学分析、轨迹控制奠定了基础。 展开更多
关键词 6自由度喷涂机器人 雅克比矩阵 工作空间 ADAMS
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