IROS 2018poster21 citations

Multi-Limbed Robot Vertical Two Wall Climbing Based on Static Indeterminacy Modeling and Feasibility Region Analysis

Xuan Lin, Hari Krishnan, Yao Su, Dennis W Hong

Abstract

This paper presents a technique to model statically indeterminate forces based on stiffness matrices for multi-limbed climbing robots. Current wall climbing robots in literature overlook statically indeterminate forces, causing an incapability to estimate climbing failure under certain circumstances. Accounting for these forces, robot deformation can be approximated, paving the way for the proposed two-wall climbing approach. During a wall climb, two failure modes, slide and over-torque, are identified to compute feasible climbing region. A hexapod robot is used to verify the proposed technique by climbing between walls with pure friction end effectors.

BibTeX
@inproceedings{iros2018_multilimbedrobot,
  title = {Multi-Limbed Robot Vertical Two Wall Climbing Based on Static Indeterminacy Modeling and Feasibility Region Analysis},
  author = {Xuan Lin and Hari Krishnan and Yao Su and Dennis W Hong},
  booktitle = {IROS 2018},
  year = {2018}
}
Multi-Limbed Robot Vertical Two Wall Climbing Based on Static Indeterminacy Modeling and Feasibility Region Analysis · IROS 2018