Saved in:
Bibliographic Details
Main Authors: Mudhangulla, Sridhar Babu, Anubi, Olugbenga Moses
Format: Preprint
Published: 2026
Subjects:
Online Access:https://arxiv.org/abs/2604.21329
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914527085330432
author Mudhangulla, Sridhar Babu
Anubi, Olugbenga Moses
author_facet Mudhangulla, Sridhar Babu
Anubi, Olugbenga Moses
contents This paper presents a unified string-stability framework for leader-follower multi-agent systems governed by first-, second-, and m-th order consensus protocols operating under an r-predecessor directed communication topology. While string stability has been extensively studied for specific vehicle models and individual consensus protocols, existing results remain fragmented across protocol orders and do not identify the fundamental factors governing disturbance amplification or attenuation. This work shows that, for all consensus orders, string stability is dictated solely by the communication richness r, while the protocol order m influences only the mid-frequency transient behavior. In particular, the low-frequency gain of the disturbance propagation coefficient is inversely proportional to r for every m, implying that higher-order consensus cannot overcome the structural limitation imposed by insufficient communication and that, under the adopted H-infinity-based string-stability definition and the present framework, string stability is achievable if and only if r >= 2. This establishes a structural-dynamic separation principle that unifies and generalizes classical platoon results, providing new insight into the interplay between topology and controller design in cooperative driving and multi-agent coordination. The framework is developed under idealized identical-agent and fixed-topology assumptions, providing a baseline for future robust extensions. Numerical simulations corroborate the analysis and illustrate how m and r jointly shape disturbance propagation along the formation.
format Preprint
id arxiv_https___arxiv_org_abs_2604_21329
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Generalized String-Stability Criteria for Consensus Protocols
Mudhangulla, Sridhar Babu
Anubi, Olugbenga Moses
Optimization and Control
This paper presents a unified string-stability framework for leader-follower multi-agent systems governed by first-, second-, and m-th order consensus protocols operating under an r-predecessor directed communication topology. While string stability has been extensively studied for specific vehicle models and individual consensus protocols, existing results remain fragmented across protocol orders and do not identify the fundamental factors governing disturbance amplification or attenuation. This work shows that, for all consensus orders, string stability is dictated solely by the communication richness r, while the protocol order m influences only the mid-frequency transient behavior. In particular, the low-frequency gain of the disturbance propagation coefficient is inversely proportional to r for every m, implying that higher-order consensus cannot overcome the structural limitation imposed by insufficient communication and that, under the adopted H-infinity-based string-stability definition and the present framework, string stability is achievable if and only if r >= 2. This establishes a structural-dynamic separation principle that unifies and generalizes classical platoon results, providing new insight into the interplay between topology and controller design in cooperative driving and multi-agent coordination. The framework is developed under idealized identical-agent and fixed-topology assumptions, providing a baseline for future robust extensions. Numerical simulations corroborate the analysis and illustrate how m and r jointly shape disturbance propagation along the formation.
title Generalized String-Stability Criteria for Consensus Protocols
topic Optimization and Control
url https://arxiv.org/abs/2604.21329