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Input Shaping for Point-to-Point Motion with a Continuum Robot Arm

Rodolfo Hdz. Ibarra, Karan Baker, Parsa Molaei, Adrian Stein, Hunter B. Gilbert

arXiv:2607.25071Published July 27, 20260 citations
  • cs.RO
  • eess.SY
  • end-effector
  • robot

Abstract

A cable-driven continuum robot arm is an underactuated mechanism and may suffer residual vibration at the end of a rest-to-rest maneuver. In this work, a time-delay filter is applied as an input shaper to the system to eliminate the excitation of vibratory modes. A non-robust and a robust time-delay filter are designed based on a linear system model and demonstrate improved response compared to a velocity-driven pulse input. Experimental results using the continuum robot validate the application of the input shaper, with reduced overshoot and settling time exemplifying the reduction in oscillation at the end of the maneuver. It is also shown that utilizing the robust shaper further improves the response of the arm in comparison to applying the non-robust shaper. These results are significant towards the precise and robust implementation of continuum robots in applications involving arbitrary end-effector trajectories.

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