Smart contracts vulnerabilities detection using ensemble architecture of graphical attention model distillation and inference network
Document Type
Article
Publication Title
Iaes International Journal of Artificial Intelligence
Abstract
Smart contracts are automated agreements executed on a blockchain, offering reliability through their immutable and distributed nature. Yet, their unalterable deployment necessitates precise preemptive security checks, as vulnerabilities could lead to substantial financial damages henceforth testing for vulnerabilities is necessary prior to deployment. This paper presents the graphical attention model distillation and inference network (GAMDI-Net), a pioneering methodology that significantly enhances smart contract vulnerability detection. GAMDI-Net introduces a unique graphical learning module that employs attention mechanism networks to transform complex contract code into a smart graphical representation. In addition to this a dual-modality model distillation and mutual modality learning mechanism, GAMDI-Net excels in synthesizing semantic and control flow data to predict absent bytecode embeddings with high accuracy. This methodology not only improves the precision of vulnerability detection but also addresses scalability and efficiency challenges, reinforcing trust in the deployment of secure smart contracts within the blockchain ecosystem.
First Page
724
Last Page
736
DOI
10.11591/ijai.v14.i1.pp724-736
Publication Date
2-1-2025
Recommended Citation
Preethi; Ulla, Mohammed Mujeer; Anni, Ashwitha; and Murthy, Pavithra Narasimha, "Smart contracts vulnerabilities detection using ensemble architecture of graphical attention model distillation and inference network" (2025). Open Access archive. 13764.
https://impressions.manipal.edu/open-access-archive/13764