Complex networks are a successful framework to describe collective behaviour in many applications, but a notable gap remains in the current literature, that of proving asymptotic convergence in networks of piecewise-smooth systems. Indeed, a wide variety of physical systems display discontinuous dynamics that change abruptly, including dry friction mechanical oscillators, electrical power converters, and biological neurons. In this paper, we study how to enforce global asymptotic state-synchronization in these networks. Specifically, we propose the addition of a distributed discontinuous coupling action to the commonly used diffusive coupling protocol. Moreover, we provide analytical estimates of the thresholds on the coupling gains required for convergence, and highlight the importance of a new graph connectivity measure, termed as minimum density. The theoretical results are illustrated by a set of representative examples.

Convergence and synchronization in networks of piecewise-smooth systems via distributed discontinuous coupling / Coraggio, M.; De Lellis, P.; di Bernardo, M.. - In: AUTOMATICA. - ISSN 0005-1098. - 129:(2021), p. 109596. [10.1016/j.automatica.2021.109596]

Convergence and synchronization in networks of piecewise-smooth systems via distributed discontinuous coupling

Coraggio M.;De Lellis P.;di Bernardo M.
2021

Abstract

Complex networks are a successful framework to describe collective behaviour in many applications, but a notable gap remains in the current literature, that of proving asymptotic convergence in networks of piecewise-smooth systems. Indeed, a wide variety of physical systems display discontinuous dynamics that change abruptly, including dry friction mechanical oscillators, electrical power converters, and biological neurons. In this paper, we study how to enforce global asymptotic state-synchronization in these networks. Specifically, we propose the addition of a distributed discontinuous coupling action to the commonly used diffusive coupling protocol. Moreover, we provide analytical estimates of the thresholds on the coupling gains required for convergence, and highlight the importance of a new graph connectivity measure, termed as minimum density. The theoretical results are illustrated by a set of representative examples.
2021
Convergence and synchronization in networks of piecewise-smooth systems via distributed discontinuous coupling / Coraggio, M.; De Lellis, P.; di Bernardo, M.. - In: AUTOMATICA. - ISSN 0005-1098. - 129:(2021), p. 109596. [10.1016/j.automatica.2021.109596]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/876558
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