Graph Neural Network-Based Framework for Intelligent Cyber Threat Detection in Cloud Computing
Abstract
Cloud computing generate highly interconnected security data involving users, virtual machines, containers, applications, network flows, authentication events, and resource interactions. Conventional cyber threat detection techniques frequently represent such information as independent records, thereby limiting their ability to capture relational dependencies among entities and events. This paper proposes a Graph Neural Network (GNN)-based framework for intelligent cyber threat detection in cloud computing environments. The proposed approach models cloud infrastructure as a dynamic attributed graph in which nodes represent cloud entities and edges encode communication, access, dependency, or behavioral relationships. The methodology integrates graph construction, sparse dependency estimation, feature learning, GNN-based representation propagation, threat classification, and adaptive alert prioritization. The theoretical foundation is derived from graph networks and relational inductive biases, while sparse graphical-model techniques provide a principled basis for identifying meaningful dependencies in high-dimensional cloud telemetry. Optimization mechanisms based on shrinkage and distributed optimization are incorporated to improve computational efficiency and scalability. The framework is conceptually aligned with the graph-based deep learning approach reported by Marri et al. (2025), while extending the underlying perspective toward an integrated cloud-security architecture. The analytical findings indicate that relational modeling can improve contextual threat identification, reduce dependence on isolated event signatures, and support more interpretable security reasoning. However, challenges remain regarding dynamic graph construction, computational overhead, class imbalance, adversarial manipulation, and temporal concept drift. The study establishes a research-oriented foundation for intelligent, scalable, and relationship-aware cyber threat detection in cloud environments.
Keywords
References
Similar Articles
- Matteo Ricci, Redefining Ethical Asset Management Through Intelligent Technologies and Cognitive Expertise , International Journal of Next-Generation Engineering and Technology: Vol. 3 No. 06 (2026): Volume 03 Issue 06
- Dr. Elena Marovic, Human Exposure to Microplastics: Pathways, Internal Distribution, Analytical Detection, and Emerging Toxicological Implications , International Journal of Next-Generation Engineering and Technology: Vol. 2 No. 09 (2025): Volume 02 Issue 09
- Dr. A. Sterling, Automated Scalability and Cost Governance in Cloud-Native Microservices: An Orchestration Framework Leveraging Kubernetes and Ansible , International Journal of Next-Generation Engineering and Technology: Vol. 2 No. 11 (2025): Volume 02 Issue 11
- Dr. Neha Gupta, An Organizational Autonomous Systems Design Blueprint for Regulating Intelligent Agents and Adaptive Scaling , International Journal of Next-Generation Engineering and Technology: Vol. 3 No. 02 (2026): Volume 03 Issue 02
- Dr. Aditya Wijaya, Dr. Putri Lestari, Next-Generation Semantic AI Infrastructure for Sustainable Business Intelligence , International Journal of Next-Generation Engineering and Technology: Vol. 3 No. 08 (2026): Volume 03 Issue 08
- Dr. Eleanor Whitfield, Architecting Trustworthy and Equitable Artificial Intelligence in Clinical Research and Care: Ethical, Regulatory, and Workforce Imperatives for Responsible Translation , International Journal of Next-Generation Engineering and Technology: Vol. 3 No. 02 (2026): Volume 03 Issue 02
- Joshua Hoffman, The Algorithmic Frontier of Financial Intermediation: A Comprehensive Analysis of Agentic AI, Large Language Models, And Blockchain Integration in Modern Fintech Ecosystems , International Journal of Next-Generation Engineering and Technology: Vol. 3 No. 02 (2026): Volume 03 Issue 02
- Dr. Alejandro M. Cortés, Climate Vulnerability, Environmental Change, and Adaptive Pathways: Integrating Biodiversity, Agriculture, Water, Energy, Urban Systems, and Human Mobility in a Warming World , International Journal of Next-Generation Engineering and Technology: Vol. 3 No. 01 (2026): Volume 03 Issue 01
- Sneha Reddy, Optimizing Complex Processing Ecosystems using Event-Centric Approaches for Enhanced Durability , International Journal of Next-Generation Engineering and Technology: Vol. 2 No. 04 (2025): Volume 02 Issue 04
- Dr. Mateo Alvarez, INTEGRATED ENVIRONMENTAL IMPACT AND PREDICTIVE ANALYTICS FRAMEWORK FOR OFFSHORE DRILLING DISCHARGES AND BENTHIC ECOSYSTEM INTEGRITY , International Journal of Next-Generation Engineering and Technology: Vol. 3 No. 02 (2026): Volume 03 Issue 02
You may also start an advanced similarity search for this article.