Title :
Traffic Camera Anomaly Detection
Author :
Yuan-Kai Wang ; Ching-Tang Fan ; Jian-Fu Chen
Author_Institution :
Dept. of Electron. Eng., Fu Jen Catholic Univ., Taipei, Taiwan
Abstract :
Detection of camera anomaly and tampering have attracted increasing interest in video surveillance for real-time alert of camera malfunction. However, the anomaly detection for traffic cameras monitoring vehicles and recognizing license plates has not been formally studied and it cannot be solved by existing methods. In this paper, we propose a camera anomaly detection method for traffic scene that has distinct characteristics of dynamics due to traffic flow and traffic crowd, compared with normal surveillance scene. Image quality used as low-level features are measured by no-referenced metrics. Image dynamics used as mid-level features are computed by histogram distribution of optical flow. A two-stage classifier for the detection of anomaly is devised by the modeling of image quality and video dynamics with probabilistic state transition. The proposed approach is robust to many challenging issues in urban surveillance scenarios and has very low false alarm rate. Experiments are conducted on real-world videos recorded in traffic scene including the situations of high traffic flow and severe crowding. Our test results demonstrate that the proposed method is superior to previous methods on both precision rate and false alarm rate for the anomaly detection of traffic cameras.
Keywords :
feature extraction; image classification; image recognition; image sequences; object detection; probability; road traffic; traffic engineering computing; video cameras; video surveillance; camera malfunction; camera tampering detection; false alarm rate; image dynamics; image quality; license plate recognition; low-level features; mid-level features; no-referenced metrics; normal surveillance scene; optical flow histogram distribution; probabilistic state transition; traffic camera anomaly detection method; traffic cameras; traffic crowd; traffic flow; traffic scene; two-stage classifier; urban surveillance scenarios; vehicle monitoring; video dynamics; video surveillance; Cameras; Computer vision; Feature extraction; Histograms; Image motion analysis; Image quality; Vehicle dynamics; camera anomaly; camera sabotage; camera tampering; state transition system; traffic camera;
Conference_Titel :
Pattern Recognition (ICPR), 2014 22nd International Conference on
Conference_Location :
Stockholm
DOI :
10.1109/ICPR.2014.794