Consensus and flocking with transmission and reaction delays

Fuente: arXiv
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Main Authors: Continelli, Elisa, Haskovec, Jan, Pignotti, Cristina
Format: Preprint
Published: 2026
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author Continelli, Elisa
Haskovec, Jan
Pignotti, Cristina
author_facet Continelli, Elisa
Haskovec, Jan
Pignotti, Cristina
contents We investigate consensus formation and flocking behavior in multi-agent systems subject to two distinct types of delays: a transmission delay accounting for information exchange between agents, and a reaction delay representing the processing time before agents adjust their states. For a simplified linear two-agent system, we provide explicit insight into how these delays affect asymptotic stability. We then derive sufficient conditions for asymptotic consensus and flocking in the general multi-agent setting with a nonlinear, globally positive influence function. These conditions require the delays to be sufficiently small relatively to the initial data and the decay rate of the influence function. The analysis is based on a Lyapunov functional approach combined with a Halanay-type inequality. Our results establish rigorous conditions under which collective behavior emerges in delayed multi-agent systems where both communication and reaction lags are non-negligible, with applications to biological, social, and engineered systems.
format Preprint
id arxiv_https___arxiv_org_abs_2604_18848
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Consensus and flocking with transmission and reaction delays
Continelli, Elisa
Haskovec, Jan
Pignotti, Cristina
Dynamical Systems
Optimization and Control
We investigate consensus formation and flocking behavior in multi-agent systems subject to two distinct types of delays: a transmission delay accounting for information exchange between agents, and a reaction delay representing the processing time before agents adjust their states. For a simplified linear two-agent system, we provide explicit insight into how these delays affect asymptotic stability. We then derive sufficient conditions for asymptotic consensus and flocking in the general multi-agent setting with a nonlinear, globally positive influence function. These conditions require the delays to be sufficiently small relatively to the initial data and the decay rate of the influence function. The analysis is based on a Lyapunov functional approach combined with a Halanay-type inequality. Our results establish rigorous conditions under which collective behavior emerges in delayed multi-agent systems where both communication and reaction lags are non-negligible, with applications to biological, social, and engineered systems.
title Consensus and flocking with transmission and reaction delays
topic Dynamical Systems
Optimization and Control
url https://arxiv.org/abs/2604.18848