Position-based tensegrity design

Publication date

2017-11-20

Authors

Pietroni, Nico
Tarini, Marco
Vaxman, A.ISNI 0000000138182530
Panozzo, Daniele
Cignoni, Paolo

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

We propose a novel framework for the computational design of tensegrity structures, which are constructions made of struts and cables, held rigid by continuous tension between the elements. Tensegrities are known to be difficult to design-existing design methods are often restricted to using symmetric or templated configurations, limiting the design space to simple constructions. We introduce an algorithm to automatically create free-form stable tensegrity designs that satisfy both fabrication and geometric constraints, and faithfully approximate input geometric shapes. Our approach sidesteps the usual force-based approach in favor of a geometric optimization on the positions of the elements. Equipped with this formulation, we provide a design framework to explore the highly constrained space of tensegrity structures. We validate our method with simulations and real-world constructions.

Keywords

Tensegrity, Architectural Geometry, Taverne, Computer Graphics and Computer-Aided Design

Citation

Pietroni, N, Tarini, M, Vaxman, A, Panozzo, D & Cignoni, P 2017, 'Position-based tensegrity design', ACM Transactions on Graphics, vol. 36, no. 6, 172, pp. 1-14. https://doi.org/10.1145/3130800.3130809