Opening book details…
Can I read IBaggedFCNet: An Ensemble Framework for Anomaly Detection in Surveillance Videos on EtoBox?
IBaggedFCNet: An Ensemble Framework for Anomaly Detection in Surveillance Videos by Zahid, Yumna; Tahir, Muhammad Atif; Durrani, Nouman M.; Bouridane, Ahmed is a Engineering article available to read on EtoBox.
What is IBaggedFCNet: An Ensemble Framework for Anomaly Detection in Surveillance Videos about?
The prevalent use of surveillance cameras in public places and advancements in computer vision warrant most sought-after research in the domain of anomalous activity detection. Anomaly detection has shown promising applications for suspicious activity detection. In this paper, we propose a bagging framework IBaggedFCNet that leverages the power of ensembles for robust classification to detect anomalies in videos. Our approach, which investigates state-of-the-art Inception-v3 image classification network, requires no video segmentation prior to feature extraction that can produce unstable segmentation results and cause a high memory footprint. We show improvement empirically on multiple benchmark datasets, most prominently on the UCF-Crime dataset. Moreover, we experiment with different ensemble fusion methods, including static and dynamic techniques, and also prove our single model's predictive accuracy in localizing anomaly in surveillance videos.
Who reads IBaggedFCNet: An Ensemble Framework for Anomaly Detection in Surveillance Videos?
It is typically read by researchers, students, and practitioners in Engineering.
- Author
- Zahid, Yumna; Tahir, Muhammad Atif; Durrani, Nouman M.; Bouridane, Ahmed
- Publisher
- Institute of Electrical and Electronics Engineers; Institute of Electrical and Electronics Engineers Inc.; Institute of Electrical and Electronics Engineers (IEEE); Research Square (ISSN 2169-3536)
- Published
- 2020
- Language
- EN
- Field
- Engineering (Physical Sciences)
More by Zahid, Yumna; Tahir, Muhammad Atif; Durrani, Nouman M.; Bouridane, Ahmed
Browse all works by Zahid, Yumna; Tahir, Muhammad Atif; Durrani, Nouman M.; Bouridane, Ahmed