Reputation-Enhanced Practical Byzantine Fault Tolerance Algorithm for Node Capture Attacks on UAV Networks


연구 분야: Infrastructure



학회: Discover Internet of Things


초록

The rapid growth of the Unmanned Aerial Vehicles (UAVs) market has led to increased reliance on UAV technologies across various application domains such as aerial Internet of Things (IoT). However, the vulnerability of UAV infrastructure to security threats and attacks poses significant risks. The discovery of robust security measures is crucial for UAVs that operate in hostile environments. This paper proposes a Reputation-enhanced Practical Byzantine Fault Tolerance Algorithm (RePA) to address node capture attacks on UAV networks in adversarial settings. RePA integrates a reputation system into the consensus process, assigning master and candidate nodes based on their reputation values, thereby reducing the likelihood that malicious nodes become decisive. RePA also introduces a replica node that serves as a backup to the master candidate and enhances resilience against node capture attacks. This study advances UAV network security by demonstrating the effectiveness of combining reputation scores with PBFT as a defense mechanism against node capture attacks in hostile environments. An experimental study validates the efficacy, reliability, and performance of RePA.


Author Profile
Peter Onukak

Binghamton University SUNY Binghamton NY 13902 USA

United States
Author Profile
Simeon Ogunbunmi

Binghamton University SUNY Binghamton NY 13902 USA

United States
Author Profile
Yu Chen

Binghamton University SUNY Binghamton NY 13902 USA

United States

📄 논문 정보

발행 연도 2025년
인용수 0
출판 국가 Moldova, United States
사이트 Springer
좋아요 수 0

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