2026· IEEE Transactions on Network Science and Engineering· Vol 13, pp. 11805-11818· 0 citations· 82 references
Abstract
Intelligent edge networks increasingly use blockchain to support trustworthy collaboration among distributed autonomous edge agents. However, dynamic and heterogeneous edge environments expose intelligent edge agents to spam transaction attacks, where adversaries exploit repeated per-hop verification to exhaust limited computational resources and disrupt both AI workloads and blockchain operations. To address this problem, we propose a two-stage trust-driven transaction propagation mechanism combining BLS multi-signatures with reputation evaluation. In the first stage, transactions propagate within a small scope to accumulate accountable endorsements and filter suspicious transactions early. After sufficient endorsements are collected, the second stage enables rapid large-scope propagation through endorsement authentication, reputation screening, and interaction-aware probabilistic verification, reducing redundant verification while preserving continuous inspection. This design can also be extended to blockchain-enabled cross-domain coordination in various distributed computing environments, such as JointCloud computing and computing power networks. Extensive simulations under spam injection, collusion attacks, and on-off attacks demonstrate that the mechanism maintains robust performance under adversarial attacks, limits invalid transaction propagation, and reduces verification computational resource consumption by at least 56% under spam injection compared with the original blockchain mechanism.
Internet of Agents (IoA) is an emerging paradigm in which autonomous Artificial Intelligence (AI) agents collaborate across organizational boundaries. Since distributed agent interactions lack a pre-established trusted central authority, blockchain, as a decentralized technology, can be integrated into IoA for decentra...
Zhao-Jin Li, Jin-Bo Wen, J. Liao et al.· IEEE Transactions on Network...· 0 citations
A lightweight DAG-blockchain framework for trust management in edge-assisted VANETs that integrates mobility-aware trust inference, asynchronous DAG validation, and edge-assisted partial trust synchronization to improve trust reliability and communication efficiency.
Dao Thi Hang, Phi Van Pham, H. Trần· Vinh University Journal of S...· 0 citations
Flying Ad-hoc Networks (FANETs) find their way into mission-critical environments ranging from disaster relief, military reconnaissance, to agriculture and urban surveillance systems. Dynamic topologies in FANETs expose traditional routing protocols to possible insider attacks that subtly compromise network operation....
U. Panahı· Sakarya University Journal o...· 0 citations
The proposed Blockchain-Fog Computing Collaborative Framework with Deep Attention-based Collusion Detection and Automated Accountability (BF3-ACDA) framework combines a hierarchical blockchain–fog architecture with an attention-based collusion graph neural network (AttnCol-GNN), whose reputation-aware attention coeffic...
Zehao Wang, Pei-Kang Lin, Shirong Zou et al.· Discover Computing· 0 citations
Blockchain technology provides a promising solution to data security and trust challenges in uncrewed aerial vehicle (UAV) ad hoc networks. However, conventional consensus mechanisms suffer from notable inefficiencies in resource-constrained environments, characterized by high computational and communication overhead,...
Wei Zhang, Shi-Yun Xiong, Yi-Xin Li et al.· IEEE Transactions on Network...· 0 citations
This paper proposes a trust-aware blockchain-assisted multi-
agent deep reinforcement learning (MADRL) framework for
secure and scalable routing in IoT-enabled Mobile Ad Hoc
Networks (MANETs) under adversarial environments. The
proposed framework integrates hierarchical blockchain-
based trust management with distribut...
P. Hoàng· Vinh University Journal of S...· 0 citations
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