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A Geometry-Based Distributed Connectivity Maintenance Algorithm for Discrete-time Multi-Agent Systems with Visual Sensing Constraints

Xiaoli Li* ( )Jinyun Fu* Mingliang Liu Yangmengfei Xu Ying Tan Yangbin Xin* Ye Pu Denny Oetomo 
School of Information Science and Technology, Donghua University, P. R. China
School of Electrical, Mechanical and Infrastructure Engineering, The University of Melbourne, VIC 3010, Australia

This paper was recommended for publication in its revised form by Special Issue Editors: Jie Chen, Ben M. Chen and Huang.

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Abstract

This paper presents a novel approach to address the challenge of maintaining connectivity within a multi-agent system (MAS) when utilizing directional visual sensors. These sensors have become essential tools for enhancing communication and connectivity in MAS, but their geometric constraints pose unique challenges when designing controllers. Our approach, grounded in geometric principles, leverages a mathematical model of directional visual sensors and employs a gradient-descent optimization method to determine the position and orientation constraints for each sensor based on its geometric configuration. This methodology ensures network connectivity, provided that initial geometric constraints are met. Experimental results validate the efficacy of our approach, highlighting its practical applicability for a range of tasks within MAS.

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Unmanned Systems
Pages 261-275

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Cite this article:
Li X, Fu J, Liu M, et al. A Geometry-Based Distributed Connectivity Maintenance Algorithm for Discrete-time Multi-Agent Systems with Visual Sensing Constraints. Unmanned Systems, 2024, 12(2): 261-275. https://doi.org/10.1142/S2301385024410097

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Received: 11 September 2023
Revised: 04 November 2023
Accepted: 27 November 2023
Published: 08 January 2024
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