English

SCALER: A Tough Versatile Quadruped Free-Climber Robot

Robotics 2022-08-02 v3

Abstract

This paper introduces SCALER, a quadrupedal robot that demonstrates climbing on bouldering walls, overhangs, ceilings and trotting on the ground. SCALER is one of the first high-degrees of freedom four-limbed robots that can free-climb under the Earth's gravity and one of the most mechanically efficient quadrupeds on the ground. Where other state-of-the-art climbers specialize in climbing, SCALER promises practical free-climbing with payload \textit{and} ground locomotion, which realizes true versatile mobility. A new climbing gait, SKATE gait, increases the payload by utilizing the SCALER body linkage mechanism. SCALER achieves a maximum normalized locomotion speed of 1.871.87 /s, or 0.560.56 m/s on the ground and 1.01.0 /min, or 0.350.35 m/min in bouldering wall climbing. Payload capacity reaches 233233 % of the SCALER weight on the ground and 3535 % on the vertical wall. Our GOAT gripper, a mechanically adaptable underactuated two-finger gripper, successfully grasps convex and non-convex objects and supports SCALER.

Keywords

Cite

@article{arxiv.2207.01180,
  title  = {SCALER: A Tough Versatile Quadruped Free-Climber Robot},
  author = {Yusuke Tanaka and Yuki Shirai and Xuan Lin and Alexander Schperberg and Hayato Kato and Alexander Swerdlow and Naoya Kumagai and Dennis Hong},
  journal= {arXiv preprint arXiv:2207.01180},
  year   = {2022}
}

Comments

Proceeding to IROS 2022, Preprint and not a final version

R2 v1 2026-06-24T12:12:44.542Z