遥操作
主/从
机器人
运动学
控制理论(社会学)
控制工程
遥控机器人学
机器人控制
约束(计算机辅助设计)
机器人运动学
运动控制
工程类
计算机科学
模拟
移动机器人
控制(管理)
人工智能
物理
操作系统
机械工程
经典力学
作者
Pawel Malysz,Shahin Sirouspour
标识
DOI:10.1109/tro.2011.2152950
摘要
This paper is concerned with asymmetrical teleoperation, where the master/slave subsystems have different degrees of mobility. In particular, dual-master trilateral control of a possibly kinematically redundant slave robot (KRSR) and single-master control of a kinematically deficient slave robot (KDSR) are considered. In the case of a KDSR, the motion of the master robot is restricted to the natural motion constraint of the slave robot. Trilateral teleoperation is achieved via two master devices, each controlling a dedicated frame that is assigned on the slave robot. A novel control framework is presented that accomplishes two objectives: 1) motion and force tracking of the master and slave robots within their nonconstrained task spaces and 2) constrained master robot(s) motion that reflects the slave natural constraint (KDSR) or the kinematic constraint on each of the slave taskspace control frames (trilateral teleoperation). The proposed adaptive controller utilizes projection and generalized pseudoinverse matrices to achieve the stated teleoperation objectives. Stability and transparency of the asymmetric teleoperation system are demonstrated analytically and experimentally.
科研通智能强力驱动
Strongly Powered by AbleSci AI