Résumé
Anomaly detection is a long-standing research topic to support the prompt remedy of potential risks for dependency-aware tasks, where Graph Neural Networks (GNNs) models have been adopted to differentiate anomalies from normal patterns. Generally, GNN models utilize time series data to construct graph structures for capturing task dependencies between Internet of Things (IoT) devices, such that deviations from predicted behaviours are assumed as anomalies. Current forecasting-based anomaly detection methods can hardly detect anomalies, which are uncovered by historical sensory data, but are explicitly specified by domain knowledge. To solve this issue, this paper proposes a Knowledge-enhanced graph attention-based Anomaly Detection (KeAD) method. Specifically, a knowledge-enhanced graph structure is constructed by incorporating domain-specific knowledge to represent spatio-temporal dependencies between IoT devices. Thereafter, a knowledge-enhanced graph attention-based forecasting network is developed to predict future behaviours of IoT devices. Anomalies are detected by analyzing deviations from these predicted behaviours, taking domain-specific knowledge into account. Extensive experiments are conducted based on publicly-available datasets, and evaluation results demonstrate that our KeAD outperform the state-of-the-art techniques in terms of the accuracy of anomaly detection.
| langue originale | Anglais |
|---|---|
| titre | Proceedings - 2024 IEEE International Conference on Web Services, ICWS 2024 |
| rédacteurs en chef | Rong N. Chang, Carl K. Chang, Zigui Jiang, Jingwei Yang, Zhi Jin, Michael Sheng, Jing Fan, Kenneth K. Fletcher, Qiang He, Qiang He, Claudio Ardagna, Jian Yang, Jianwei Yin, Zhongjie Wang, Amin Beheshti, Stefano Russo, Nimanthi Atukorala, Jia Wu, Philip S. Yu, Heiko Ludwig, Stephan Reiff-Marganiec, Emma Zhang, Anca Sailer, Nicola Bena, Kuang Li, Yuji Watanabe, Tiancheng Zhao, Shangguang Wang, Zhiying Tu, Yingjie Wang, Kang Wei |
| Editeur | Institute of Electrical and Electronics Engineers Inc. |
| Pages | 568-577 |
| Nombre de pages | 10 |
| ISBN (Electronique) | 9798350368550 |
| Les DOIs | |
| état | Publié - 1 janv. 2024 |
| Evénement | 2024 IEEE International Conference on Web Services, ICWS 2024 - Hybrid, Shenzhen, Chine Durée: 7 juil. 2024 → 13 juil. 2024 |
Une conférence
| Une conférence | 2024 IEEE International Conference on Web Services, ICWS 2024 |
|---|---|
| Pays/Territoire | Chine |
| La ville | Hybrid, Shenzhen |
| période | 7/07/24 → 13/07/24 |
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