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Infinitesimal Weak Rigidity, Formation Control of Three Agents, and Extension to 3-dimensional Space

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abstract

In this paper, we introduce new concepts of weak rigidity matrix and infinitesimal weak rigidity for planar frameworks. The weak rigidity matrix is used to directly check if a framework is infinitesimally weakly rigid while previous work can check a weak rigidity of a framework indirectly. An infinitesimal weak rigidity framework can be uniquely determined up to a translation and a rotation (and a scaling also when the framework does not include any edge) by its inter-neighbor distances and angles. We apply the new concepts to a three-agent formation control problem with a gradient control law, and prove instability of the control system at any incorrect equilibrium point and convergence to a desired target formation. Also, we propose a modified Henneberg construction, which is a technique to generate minimally rigid (or weakly rigid) graphs. Finally, we extend the concept of the weak rigidity in R^2 to the concept in R^3.

fields

eess.SY 1

years

2019 1

verdicts

CONDITIONAL 1

representative citing papers

Angle rigidity and its usage to stabilize planar formations

eess.SY · 2019-08-05 · conditional · novelty 7.0

A framework with signed angle constraints is infinitesimally angle rigid exactly when its rigidity matrix has rank 2N-4, and this condition is used to build an angle-only formation stabilization law.

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  • Angle rigidity and its usage to stabilize planar formations eess.SY · 2019-08-05 · conditional · none · ref 23 · internal anchor

    A framework with signed angle constraints is infinitesimally angle rigid exactly when its rigidity matrix has rank 2N-4, and this condition is used to build an angle-only formation stabilization law.