Trustworthy Access Control for Multiaccess Edge Computing in Blockchain-Assisted 6G Systems

Blockchain is a revolutionary technology for constructing trustworthy communications for 6G multiaccess edge computing (6G-MEC). Designing a blockchain-based access control system for 6G-MEC is challenging due to the highly heterogeneous edge devices (EDs) in 6G-MEC. However, traditional blockchain-...

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Veröffentlicht in:IEEE transactions on industrial informatics 2024-05, Vol.20 (5), p.7732-7743
Hauptverfasser: Wei, Yihang, Gai, Keke, Yu, Jing, Zhu, Liehuang, Choo, Kim-Kwang Raymond
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Sprache:eng
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Zusammenfassung:Blockchain is a revolutionary technology for constructing trustworthy communications for 6G multiaccess edge computing (6G-MEC). Designing a blockchain-based access control system for 6G-MEC is challenging due to the highly heterogeneous edge devices (EDs) in 6G-MEC. However, traditional blockchain-based access control methods cannot satisfy the heterogeneous device scenarios and are unable to assign voting weights based on the performance of EDs. In this article, we propose a trustworthy access control method for 6G-MEC networks and demonstrate how blockchain can be utilized in our proposed blockchain-assisted multiaccess control approach. Our approach develops an attribute validation and a validation weight method to offer strengthened access control in a decentralized context. We have proposed a trustworthy access control for multiaccess edge computing by using a multitier blockchain architecture and a reinforcement-learning-based weight determination algorithm for ED to eliminate the influence on blockchain consensus behavior. Experimental results demonstrate the effectiveness of our proposed approach.
ISSN:1551-3203
1941-0050
DOI:10.1109/TII.2024.3360467