Repository logo
 

Distributed methods for synchronization of orthogonal matrices over graphs

Accepted version
Peer-reviewed

Type

Article

Change log

Authors

Thunberg, J 
Bernard, F 
Mendes Silva Goncalves, Jorge  ORCID logo  https://orcid.org/0000-0002-5228-6165

Abstract

This paper addresses the problem of synchronizing orthogonal matrices over directed graphs. For synchronized transformations (or matrices), composite transformations over loops equal the identity. We formulate the synchronization problem as a least-squares optimization problem with nonlinear constraints. The synchronization problem appears as one of the key components in applications ranging from 3D-localization to image registration. The main contributions of this work can be summarized as the introduction of two novel algorithms; one for symmetric graphs and one for graphs that are possibly asymmetric. Under general conditions, the former has guaranteed convergence to the solution of a spectral relaxation to the synchronization problem. The latter is stable for small step sizes when the graph is quasi-strongly connected. The proposed methods are verified in numerical simulations.

Description

Keywords

multi-agent systems, distributed optimization, sensor networks, consensus algorithms, robust estimation, measurement and instrumentation

Journal Title

Automatica

Conference Name

Journal ISSN

0005-1098
1873-2836

Volume Title

80

Publisher

Elsevier
Sponsorship
The authors gratefully acknowledge the financial support from the Fonds National de la Recherche, Luxembourg (FNR8864515, FNR6538106).