English

Characterizing the Universal Rigidity of Generic Tensegrities

Optimization and Control 2020-05-01 v1

Abstract

A tensegrity is a structure made from cables, struts and stiff bars. A dd-dimensional tensegirty is universally rigid if it is rigid in any dimension dd' with ddd'\geq d. The celebrated super stability condition due to Connelly gives a sufficient condition for a tensegrity to be universally rigid. Gortler and Thurston showed that super stability characterizes universal rigidity when the point configuration is generic and every member is a stiff bar. We extend this result in two directions. We first show that a generic universally rigid tensegrity is super stable. We then extend it to tensegrities with point group symmetry, and show that this characterization still holds as long as a tensegrity is generic modulo symmetry. Our strategy is based on the block-diagonalization technique for symmetric semidefinite programming problems, and our proof relies on the theory of real irreducible representation of finite groups.

Keywords

Cite

@article{arxiv.2004.14718,
  title  = {Characterizing the Universal Rigidity of Generic Tensegrities},
  author = {Ryoshun Oba and Shin-ichi Tanigawa},
  journal= {arXiv preprint arXiv:2004.14718},
  year   = {2020}
}
R2 v1 2026-06-23T15:12:35.674Z