论文标题
自适应图卷积网络,用于视频中弱监督的异常检测
Adaptive Graph Convolutional Networks for Weakly Supervised Anomaly Detection in Videos
论文作者
论文摘要
对于弱监督的异常检测,由于无法对长期上下文信息进行建模,大多数现有工作仅限于视频表示不足的问题。为了解决这个问题,我们提出了一个新型弱监督的自适应图卷积网络(WAGCN),以模拟视频片段之间复杂的上下文关系。通过此,我们完全考虑了其他视频片段对当前段的影响,当时每个段的异常概率得分。首先,我们结合了视频片段的时间一致性以及功能相似性来构建全局图,该图可以充分利用视频中异常事件的时空特征之间的关联信息。其次,我们提出了一个图形学习层,以打破手动设置拓扑的限制,可以根据数据自适应地提取图形邻接矩阵。在两个公共数据集(即UCF-Crime数据集和Shanghaitech数据集)上进行了广泛的实验,证明了我们实现最先进性能的方法的有效性。
For weakly supervised anomaly detection, most existing work is limited to the problem of inadequate video representation due to the inability of modeling long-term contextual information. To solve this, we propose a novel weakly supervised adaptive graph convolutional network (WAGCN) to model the complex contextual relationship among video segments. By which, we fully consider the influence of other video segments on the current one when generating the anomaly probability score for each segment. Firstly, we combine the temporal consistency as well as feature similarity of video segments to construct a global graph, which makes full use of the association information among spatial-temporal features of anomalous events in videos. Secondly, we propose a graph learning layer in order to break the limitation of setting topology manually, which can extract graph adjacency matrix based on data adaptively and effectively. Extensive experiments on two public datasets (i.e., UCF-Crime dataset and ShanghaiTech dataset) demonstrate the effectiveness of our approach which achieves state-of-the-art performance.