Home /Research /TREE: A Variable Topology, Branching Continuum Robot
OTHER

TREE: A Variable Topology, Branching Continuum Robot

Michael C. Lastinger, Siddharth Verma, Apoorva Kapadia, Ian D. Walker

Year
2019
Citations
12

Abstract

We describe the design and physical realization of a novel branching continuum robot, aimed at inspection and cleaning operations in hard-to-reach environments at depths greater than human arm lengths. The design, based on a hybrid concentric-tube/tendon actuated continuum trunk core, features two pairs of fully retractable continuum branches. The retractable nature of the branches allows the robot to actively change its topology, allowing it to penetrate narrow openings and expand to adaptively engage complex environmental geometries. We detail and discuss the realization of a physical prototype of the design, and its testing in a simulated glove box environment.

Keywords

Branching (polymer chemistry)Topology (electrical circuits)RobotTree (set theory)Variable (mathematics)Computer scienceMathematicsArtificial intelligenceCombinatoricsMaterials science

Related papers

Browse all OTHER papers