采用基于图像的视觉伺服方法,基于机器人仿真工具箱(Robotics Toolbox for Matlab),在Matlab/Simulink环境下,运用子系统建立了基于图像的六自由度PUMA560机器人视觉伺服仿真模型。通过仿真试验,其结果表明所构建的机器人视觉伺服系统...采用基于图像的视觉伺服方法,基于机器人仿真工具箱(Robotics Toolbox for Matlab),在Matlab/Simulink环境下,运用子系统建立了基于图像的六自由度PUMA560机器人视觉伺服仿真模型。通过仿真试验,其结果表明所构建的机器人视觉伺服系统对于静态的目标定位能够达到较快的响应和较高的精度。展开更多
为利用视觉伺服技术实现机器人的网络遥操作,基于所给出的仿真模型,在Robotics Toolbox for Matlab工具箱的基础上,通过Matlab数据引擎技术,实现了基于Internet机器人视觉伺服系统的仿真。为增强系统的实时性,仿真中采用了数据的同步收...为利用视觉伺服技术实现机器人的网络遥操作,基于所给出的仿真模型,在Robotics Toolbox for Matlab工具箱的基础上,通过Matlab数据引擎技术,实现了基于Internet机器人视觉伺服系统的仿真。为增强系统的实时性,仿真中采用了数据的同步收发和时延缓冲策略。通过给出图像特征点的方式,操作者能够利用Internet实现对虚拟的Puma560机器人进行实时遥操作。展开更多
In this paper, A Novel Stochastic Algorithm using Pythagorean means for minimization of the objective function is described. The algorithm is initially tested with Rastrigin’s function and compared with Genetic algor...In this paper, A Novel Stochastic Algorithm using Pythagorean means for minimization of the objective function is described. The algorithm is initially tested with Rastrigin’s function and compared with Genetic algorithm results for the function with the same initial conditions. After this, it is used in tuning the gains of fuzzy PD + I controller for trajectory control of PUMA 560 robot manipulator. The results are again verified with the results of genetic algorithm.展开更多
文摘采用基于图像的视觉伺服方法,基于机器人仿真工具箱(Robotics Toolbox for Matlab),在Matlab/Simulink环境下,运用子系统建立了基于图像的六自由度PUMA560机器人视觉伺服仿真模型。通过仿真试验,其结果表明所构建的机器人视觉伺服系统对于静态的目标定位能够达到较快的响应和较高的精度。
文摘为利用视觉伺服技术实现机器人的网络遥操作,基于所给出的仿真模型,在Robotics Toolbox for Matlab工具箱的基础上,通过Matlab数据引擎技术,实现了基于Internet机器人视觉伺服系统的仿真。为增强系统的实时性,仿真中采用了数据的同步收发和时延缓冲策略。通过给出图像特征点的方式,操作者能够利用Internet实现对虚拟的Puma560机器人进行实时遥操作。
文摘In this paper, A Novel Stochastic Algorithm using Pythagorean means for minimization of the objective function is described. The algorithm is initially tested with Rastrigin’s function and compared with Genetic algorithm results for the function with the same initial conditions. After this, it is used in tuning the gains of fuzzy PD + I controller for trajectory control of PUMA 560 robot manipulator. The results are again verified with the results of genetic algorithm.