Cloud-mediated self-triggered synchronization of a general linear multi-agent system over a directed graph

Fuente: arXiv
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Auteurs principaux: Namba, Takumi, Takaba, Kiyotsugu
Format: Preprint
Publié: 2023
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author Namba, Takumi
Takaba, Kiyotsugu
author_facet Namba, Takumi
Takaba, Kiyotsugu
contents This paper proposes a self-triggered synchronization control method of a general high-order linear time-invariant multi-agent system through a cloud repository. In the cloud-mediated self-triggered control, each agent asynchronously accesses the cloud repository to get past information on its neighboring agents. Then, the agent predicts future behaviors of its neighbors as well as of its own, and locally determines its next access time to the cloud repository. In the case of a general high-order linear agent dynamics, each agent has to estimate exponential evolution of its trajectory characterized by eigenvalues of a system matrix, which is different from single/double integrator or first-order linear agents. Our proposed method deals with exponential behaviors of the agents by tightly evaluating the bounds on matrix exponentials. Based on these bound, we design the self-triggered controller through a cloud which achieves bounded state synchronization of the closed-loop system without exhibiting any Zeno behaviors. The effectiveness of the proposed method is demonstrated through the numerical simulation.
format Preprint
id arxiv_https___arxiv_org_abs_2309_05195
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Cloud-mediated self-triggered synchronization of a general linear multi-agent system over a directed graph
Namba, Takumi
Takaba, Kiyotsugu
Systems and Control
This paper proposes a self-triggered synchronization control method of a general high-order linear time-invariant multi-agent system through a cloud repository. In the cloud-mediated self-triggered control, each agent asynchronously accesses the cloud repository to get past information on its neighboring agents. Then, the agent predicts future behaviors of its neighbors as well as of its own, and locally determines its next access time to the cloud repository. In the case of a general high-order linear agent dynamics, each agent has to estimate exponential evolution of its trajectory characterized by eigenvalues of a system matrix, which is different from single/double integrator or first-order linear agents. Our proposed method deals with exponential behaviors of the agents by tightly evaluating the bounds on matrix exponentials. Based on these bound, we design the self-triggered controller through a cloud which achieves bounded state synchronization of the closed-loop system without exhibiting any Zeno behaviors. The effectiveness of the proposed method is demonstrated through the numerical simulation.
title Cloud-mediated self-triggered synchronization of a general linear multi-agent system over a directed graph
topic Systems and Control
url https://arxiv.org/abs/2309.05195