Home /Research /Model-free Visual Control for Continuum Robot Manipulators via Orientation Adaptation
MANIPULATION

Model-free Visual Control for Continuum Robot Manipulators via Orientation Adaptation

Mrinal Verghese, Florian Richter, Aaron Gunn, Phil Weissbrod, Michael C. Yip

Year
2019
Citations
8
Access
Open access

Abstract

We present an orientation adaptive controller to compensate for the effects of highly constrained environments on continuum manipulator actuation. A transformation matrix updated using optimal estimation techniques from optical flow measurements captured by the distal camera is composed with any Jacobian estimation or kinematic model to compensate for these effects. By utilizing domain knowledge to define the structure of this matrix, fewer parameters need to be estimated and a stable controller can be guaranteed. The algorithm is tested on a custom robotic catheter and convergence is shown both empirically and theoretically.

Keywords

Jacobian matrix and determinantControl theory (sociology)KinematicsRobot manipulatorOrientation (vector space)Computer scienceVisual servoingController (irrigation)Convergence (economics)Control engineering

Related papers

Browse all MANIPULATION papers