运动学
软件部署
操纵器(设备)
工程类
运动学方程
计算机科学
并联机械手
控制工程
航空航天工程
机械工程
机器人
机器人运动学
物理
移动机器人
机械臂
经典力学
人工智能
软件工程
作者
Justin L. Sitler,Long Wang
摘要
Abstract Underwater vehicle-manipulator systems (UVMSs) are underwater robots equipped with one or more manipulators to perform intervention missions. This paper provides the mechanical, electrical, and software design of a novel UVMS equipped with a continuum manipulator, referred to as a continuum-UVMS. A kinematic model for the continuum-UVMS is derived in order to build an algorithm to resolve the robot's redundancy and generate joint space commands. Different methods to optimize the trajectory for specific tasks are proposed using both the weighted least norm solution and the gradient projection method. Kinematic simulation results are analyzed to assess the performance of the proposed algorithm. Finally, the continuum-UVMS is deployed in an experimental demonstration in which both teleoperation and autonomous control are tested for a given reference trajectory.
科研通智能强力驱动
Strongly Powered by AbleSci AI