A nonlinear visual mapping model is presented to replace the image Jacobian relation for uncalibrated hand/eye coordination. A new visual tracking controller based on artificial neural network is designed. Simulation ...A nonlinear visual mapping model is presented to replace the image Jacobian relation for uncalibrated hand/eye coordination. A new visual tracking controller based on artificial neural network is designed. Simulation results show that this method can drive the static tracking error to zero quickly and keep good robustness and adaptability at the same time. In addition, the algorithm is very easy to be implemented with low computational complexity.展开更多
给出了一种6自由度(degree of freedom,DOF)关节式坐标测量机的总体结构设计,运用Denavit-Hartenberg(D-H)方法建立了该测量机的测量方程,并研究了测量机的误差模型,基于激光跟踪仪建立了基于空间坐标变换原理的测量机参数标定模型.对...给出了一种6自由度(degree of freedom,DOF)关节式坐标测量机的总体结构设计,运用Denavit-Hartenberg(D-H)方法建立了该测量机的测量方程,并研究了测量机的误差模型,基于激光跟踪仪建立了基于空间坐标变换原理的测量机参数标定模型.对关节式坐标测量机标定前后的测量精度进行了实验验证,实验结果证明高精度激光跟踪仪可实现对关节式坐标测量机的快速标定.展开更多
基金This project was supported by the National Natural Science Foundation (No. 69875010).
文摘A nonlinear visual mapping model is presented to replace the image Jacobian relation for uncalibrated hand/eye coordination. A new visual tracking controller based on artificial neural network is designed. Simulation results show that this method can drive the static tracking error to zero quickly and keep good robustness and adaptability at the same time. In addition, the algorithm is very easy to be implemented with low computational complexity.
文摘给出了一种6自由度(degree of freedom,DOF)关节式坐标测量机的总体结构设计,运用Denavit-Hartenberg(D-H)方法建立了该测量机的测量方程,并研究了测量机的误差模型,基于激光跟踪仪建立了基于空间坐标变换原理的测量机参数标定模型.对关节式坐标测量机标定前后的测量精度进行了实验验证,实验结果证明高精度激光跟踪仪可实现对关节式坐标测量机的快速标定.