English

Laman Graphs are Generically Bearing Rigid in Arbitrary Dimensions

Systems and Control 2017-08-24 v2 Combinatorics Metric Geometry

Abstract

This paper addresses the problem of constructing bearing rigid networks in arbitrary dimensions. We first show that the bearing rigidity of a network is a generic property that is critically determined by the underlying graph of the network. A new notion termed generic bearing rigidity is defined for graphs. If the underlying graph of a network is generically bearing rigid, then the network is bearing rigid for almost all configurations; otherwise, the network is not bearing rigid for any configuration. As a result, the key to construct bearing rigid networks is to construct generically bearing rigid graphs. The main contribution of this paper is to prove that Laman graphs, which can be generated by the Henneberg construction, are generically bearing rigid in arbitrary dimensions. As a consequence, if the underlying graph of a network is Laman, the network is bearing rigid for almost all configurations in arbitrary dimensions.

Keywords

Cite

@article{arxiv.1703.04035,
  title  = {Laman Graphs are Generically Bearing Rigid in Arbitrary Dimensions},
  author = {Shiyu Zhao and Zhiyong Sun and Daniel Zelazo and Minh-Hoang Trinh and Hyo-Sung Ahn},
  journal= {arXiv preprint arXiv:1703.04035},
  year   = {2017}
}

Comments

To appear in IEEE CDC 2017

R2 v1 2026-06-22T18:43:14.779Z