Dissimilate-and-assimilate strategy for video anomaly detection and localization

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25
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27

초록

Unsupervised anomaly detection in videos is a challenging task owing to the remarkable generalization capacity of the deep convolutional autoencoders and the complex nature of anomalous events. In this study, we introduce a dissimilate-and-assimilate strategy to learn essential patterns of multilevel latent representations of normal spatial and temporal information. To obtain the core normality of the appear-ance and motion samples over multiple layers of the network, our proposed method diversifies the latent patterns of normal spatial and temporal data to make the out-of-distribution samples discrete (dissimi-lation) and integrates the latent features of two different samples into a single sample using a feature attention mechanism for robust optimization (assimilation). Based on the learned representations, the network generates convincing predictions of the normal frame, even if it receives abnormal samples after training. That is, the anomalous objects in a series of frames can be detected with significant reconstruc-tion errors, thus leading to better detection and precise localization performance. To verify the effective-ness of the proposed method, we quantify the preciseness of anomaly localization using the outside -inside error ratio along with the traditional area under the curve (AUC) metric to measure the detection performance on the USCD Pedestrian 2, CHUK Avenue and ShanghaiTech Campus datasets.(c) 2022 Elsevier B.V. All rights reserved.

키워드

Video anomaly detectionOut-of-distribution detectionUnsupervised learningABNORMAL EVENT DETECTION
제목
Dissimilate-and-assimilate strategy for video anomaly detection and localization
저자
Hyun, WooyeolNam, Woo-JeoungLee, Seong-Whan
DOI
10.1016/j.neucom.2022.12.026
발행일
2023-02-14
유형
Article
저널명
Neurocomputing
522
페이지
203 ~ 213