Research on graphic information and trajectory control of robots

JIAO Enzhang, CHEN Meihong

JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2009, Vol. 33 ›› Issue (06) : 113.

JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2009, Vol. 33 ›› Issue (06) : 113. DOI: 10.3969/j.jssn.1000-2006.2009.06.026

Research on graphic information and trajectory control of robots

  • JIAO Enzhang, CHEN Meihong
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Abstract

In order to accomplish the offline programming during the robot carrying out complexpath procedure, the paper proposed a method that can obtain inverse solution of the kinematic equation based on simulation results. The information of each knot on robot work path was extracted with AutoCAD, and simulated the robot’s movement with ADAMS. From the results of the simulation, we could derive the angle function for each joint of the robot. And then, we could generate a control program from these joints’ angle functions. With MOTOMANUP6 robot and related softwares, we proved the correctness and effectiveness of the proposed perspective by cutting operations simulation. The perspective and method for offline programming are suitable for a variety of industrial robot.

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JIAO Enzhang, CHEN Meihong. Research on graphic information and trajectory control of robots[J]. JOURNAL OF NANJING FORESTRY UNIVERSITY. 2009, 33(06): 113 https://doi.org/10.3969/j.jssn.1000-2006.2009.06.026

References

[1]Edwall C W, Ho C Y, Pottinger H J. Trajectory generation and control of a robot arm using splines functions[J]. Robots, 1982(VI): 421-445.
[2]Lin C S, Chang P R, Luh J Y S. Formulation and optimization of cubic polynomial joint trajectories for industrial robots[J]. IEEE Trans Automat Contr, 1983(12): 1066-1073.
[3]Meng Q H M. Application of an efficient neural network to identification and adaptive control of unknown robot dynamics[J]. Int J Intell Control Syst, 1996, 4: 459-468.
[4]Middleton R H, Goodwin G C. Adaptive computed torque control for rigid link manipulators[J]. System Control Let, 1998, 10: 9-16.
[5]Slotine J J E, Li W. Adaptive manipulator control: a case study[J]. IEEE Trans Automat Control, 1998, 33: 995-1003.
[6]Kim J Y. CADbased automated robot programming inadhesive spray systems for shoe outsoles and uppers [J]. Journal of Robotic Systems, 2004, 21(11): 625-634.
[7]Kwon D S, Song S K. A method for generating acementingtrajectory of a shoe sole: UK, GB2413402 [P]. 2005-10-26.
[8]Hu Z, Bicker R, Taylor P, et al. Computer vision for shoeupper profile measurement via upper and sole conformal matching[J]. Optics and Lasers in Engineering, 2007, 45(1): 183-190.
[9]刘艳菊,戴学丰,刘树东. 机械手运动轨迹最优化模糊控制系统框架[J]. 计算机工程与应用,2007,43(4):224-226.
[10]蒋勇敏,许明恒. 基于数控加工轨迹泛函的动态控制方法[J]. 机械工程学报,2007,43(5):119-203
[11]武传宇,贺磊盈,李秦川, 等. 基于CAD模型的鞋底喷胶轨迹生成方法[J]. 计算机辅助设计与图形学学报,2008,20(5):678-682.
[12]李增刚. ADAMS入门详解与实例[M]. 北京:国防工业出版社,2006.

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