IROS 2023poster0 citations

Closed Loop Control of Tendon Driven Continuum Robots Using IMUs

Manu Srivastava, Richard Groff, Ian D. Walker

Abstract

In this paper, we present a new approach to the control of continuum robot sections using IMU quaternion feedback. We use a discrete time root finding algorithm to steer a continuum section in the desired shape space direction. We found that the approach lacks end effector positioning accuracy when used by itself, however, when used in conjunction with a feedforward model it actively counters the influence of unmodeled factors. The approach is implemented on a single section of a continuum hose robot developed for 3D printing of concrete in construction applications. The results demonstrate significant improvements in positioning accuracy compared to standalone kinematics/mechanics-based position control of tendon lengths. Additionally, this approach can be implemented using low cost sensing and control hardware.

BibTeX
@inproceedings{iros2023_closedloopcontro,
  title = {Closed Loop Control of Tendon Driven Continuum Robots Using IMUs},
  author = {Manu Srivastava and Richard Groff and Ian D. Walker},
  booktitle = {IROS 2023},
  year = {2023}
}