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Resilient Multi-Dimensional Consensus and Containment Control of Multi-UAV Networks in Adversarial Environments

  • Peng Zhang*
  • , Zhenghua Liu
  • , Kai Li
  • , Sentang Wu
  • , Lianhe Luo
  • *Corresponding author for this work
  • Beihang University
  • Beijing System Design Institute of Electro-Mechanic Engineering
  • China Electronics Technology Group Corporation

Research output: Contribution to journalArticlepeer-review

Abstract

Practical large-scale multiple unmanned aerial vehicle (multi-UAV) networks are susceptible to multiple potential points of vulnerability, such as hardware failures or adversarial attacks. Existing resilient multi-dimensional coordination control algorithms in multi-UAV networks are rather costly in the computation of a safe point and rely on an assumption of the maximum number of adversarial nodes in the multi-UAV network or neighborhood. In this paper, a dynamic trusted convex hull method is proposed to filter received states in multi-dimensional space without requiring assumptions about the maximum adversaries. Based on the proposed method, a distributed local control protocol is designed with lower computational complexity and higher tolerance of adversarial nodes. Sufficient and necessary graph-theoretic conditions are obtained to achieve resilient multi-dimensional consensus and containment control despite adversarial nodes’ behaviors. The theoretical results are validated through simulations.

Original languageEnglish
Article number428
JournalDrones
Volume9
Issue number6
DOIs
StatePublished - Jun 2025

Keywords

  • adversarial nodes
  • multi-UAV networks
  • resilient consensus
  • resilient containment control

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