Rigidity of Linearly Constrained Frameworks

Author:

Cruickshank James1,Guler Hakan23,Jackson Bill2,Nixon Anthony4

Affiliation:

1. School of Mathematics, Statistics and Applied Mathematics, National University of Ireland, Galway, Ireland

2. School of Mathematical Sciences, Queen Mary University of London, Mile End Road, London, UK

3. Department of Mathematics, Faculty of Arts & Sciences, Kastamonu University, Kastamonu, Turkey

4. Department of Mathematics and Statistics, Lancaster University, UK

Abstract

Abstract We consider the problem of characterising the generic rigidity of bar-joint frameworks in $\mathbb{R}^d$ in which each vertex is constrained to lie in a given affine subspace. The special case when $d=2$ was previously solved by Streinu and Theran [14] in 2010. We will extend their characterisation to the case when $d\geq 3$ and each vertex is constrained to lie in an affine subspace of dimension $t$, when $t=1,2$ and also when $t\geq 3$ and $d\geq t(t-1)$. We then point out that results on body–bar frameworks obtained by Katoh and Tanigawa [8] in 2013 can be used to characterise when a graph has a rigid realisation as a $d$-dimensional body–bar framework with a given set of linear constraints.

Publisher

Oxford University Press (OUP)

Subject

General Mathematics

Reference16 articles.

1. Generalizations of Kempe’s universality theorem;Abbott,2008

2. The rigidity of graphs;Asimow;Trans. Amer. Math. Soc.,1978

3. Algorithms for graph rigidity and scene analysis;Berg,2003

4. Point-hyperplane frameworks, slider joints, and rigidity preserving transformations;Eftekhari;J. Combin. Theory Ser. B

5. Stress matrices and global rigidity of frameworks on surfaces;Jackson;Discrete Comput. Geom,2015

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1. Global Rigidity of Line Constrained Frameworks;SIAM Journal on Discrete Mathematics;2024-02-06

2. A sufficient connectivity condition for rigidity and global rigidity of linearly constrained frameworks in R2;Discrete Applied Mathematics;2023-02

3. Rigidity through a Projective Lens;Applied Sciences;2021-12-15

4. An Improved Bound for the Rigidity of Linearly Constrained Frameworks;SIAM Journal on Discrete Mathematics;2021-01

5. Global Rigidity of 2D Linearly Constrained Frameworks;International Mathematics Research Notices;2020-10-26

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