4.7 Article

Analysis of clustered cable-actuation strategies of V-Expander tensegrity structures

Journal

ENGINEERING STRUCTURES
Volume 296, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.engstruct.2023.116868

Keywords

Tensegrity; Actuation strategy; Cable-actuated structure; Deployable structure; Clustered tensegrity structure

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This study presents an analysis method for designing cable-actuated clustered V-Expander tensegrity elementary cells based on nonlinear tensegrity statics. The method involves selecting specific cables as the active elements and determining their actuation efficiency to find the optimal actuation strategy. This approach can be applied to analyze and design other types of cable-driven tensegrity structures.
This study presents an analysis method to design cable-actuated clustered V-Expander tensegrity elementary cells based on the nonlinear tensegrity statics. Clustered actuation takes advantage of the presence of cable elements in a tensegrity structure by allowing cables to run over frictionless joints. The study first provides the nonlinear static equations of clustered tensegrity structures. Then, it introduces the topology of V-Expander tensegrity elementary cells, which vary in complexity and aspect ratio. To achieve cable actuation, specific sets of cables are chosen from the complete pool of cables to serve as the active elements of V-Expander cells. During actuation, the length of these active cables decreases. The actuation efficiency of each specific choice of active cable is computed to find the optimal actuation strategy. The proposed approach can be utilized to analyze and design other types of cable-driven tensegrity structures, with applications to morphing structures and soft robots.

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