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Magnecko: Design and Control of a Quadrupedal Magnetic Climbing Robot

  • Stefan Leuthard,
  • Timo Eugster,
  • Nicolas Faesch,
  • Riccardo Feingold,
  • Connor Flynn,
  • Michael Fritsche,
  • Nicolas Hürlimann,
  • Elena Morbach,
  • Fabian Tischhauser,
  • Matthias Müller,
  • Markus Montenegro,
  • Valerio Schelbert,
  • Jia-Ruei Chiu,
  • Philip Arm,
  • Marco Hutter

摘要

Climbing robots hold significant promise for applications such as industrial inspection and maintenance, particularly in hazardous or hard-to-reach environments. This paper describes the quadrupedal climbing robot Magnecko, developed with the major goal of providing a research platform for legged climbing locomotion. With its 12 actuated degrees of freedom arranged in an insect-style joint configuration, Magnecko’s high manipulability and high range of motion allow it to handle challenging environments like overcoming concave \(90^\circ \) corners. A model predictive controller enables Magnecko to crawl on the ground, on horizontal overhangs, and on vertical walls. Thanks to the custom actuators and the electro-permanent magnets that are used for adhesion on ferrous surfaces, the system is powerful enough to carry additional payloads of at least 65% of its own weight in all orientations. The Magnecko platform serves as a foundation for climbing locomotion in complex three-dimensional environments.