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ICRA 2023

Navigating Soft Robots through Wireless Heating

Conference Paper Accepted Paper Artificial Intelligence ยท Robotics

Abstract

Recent work on battery-free soft robotics has demonstrated the use of liquid crystal elastomers (LCE) to build shape-changing materials activated by applied external heat. However, sources of heat must typically be in direct field-of-view of the robot (i. e. NIR, laser, and visual light EM sources or convective heats guns), be tethered to an external power supply (i. e. thermoelectric heating or resistive joule heaters), or require a heavy on-board battery that limits mobility and range. This paper presents a novel battery-free soft-robotics platform that can crawl through confined, enclosed, and hard-to-reach spaces (e. g. packages, machinery, pipes, etc.), hidden from view of heating infrastructure. This is achieved through the co-design of a soft robotics platform and integrated soft conductive traces that enable wireless (microwave) heating through remote stimulation. We achieve fast actuation through a careful choice of materials and the overall mechanical structure of the robot to maximize heating efficiency. Further, the robot is actively tracked through enclosed spaces using a mm Wave radar to direct heat to its location. We provide a detailed evaluation on the robot's heating efficiency, location-tracking accuracy and crawling speed.

Authors

Keywords

  • Heating systems
  • Wireless communication
  • Visualization
  • Power supplies
  • Navigation
  • Spaceborne radar
  • Power lasers
  • Soft Robots
  • Shape Changes
  • Heat Source
  • Heat Resistance
  • Printed Circuit Board
  • Microwave Heating
  • Heating Efficiency
  • Wave Radar
  • Liquid Crystal Elastomers
  • Support Vector Machine
  • Actuator
  • Electromagnetic Wave
  • Beamforming
  • Inductor Current
  • Shape Memory
  • Skin Depth
  • Liquid Metal
  • Effect Of Slope
  • Electromagnetic Heating
  • Robot Localization
  • Back Foot
  • Heat Gun
  • Parallel Patterns
  • Power In Watts
  • Induction Heating
  • Faraday's Law
  • Actuation Methods
  • Front Foot

Context

Venue
IEEE International Conference on Robotics and Automation
Archive span
1984-2025
Indexed papers
30179
Paper id
559932306081467962
v2026.09.13