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Efficient Approach for Face Detection in Video Surveillance

Efficient Approach for Face Detection in Video Surveillance
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摘要 Security access control systems and automatic video surveillance systems are becoming increasingly important recently,and detecting human faces is one of the indispensable processes.In this paper,an approach is presented to detect faces in video surveillance.Firstly,both the skin-color and motion components are applied to extract skin-like regions.The skin-color segmentation algorithm is based on the BPNN (back-error-propagation neural network) and the motion component is obtained with frame difference algorithm.Secondly,the image is clustered into separated face candidates by using the region growing technique.Finally,the face candidates are further verified by the rule-based algorithm.Experiment results demonstrate that both the accuracy and processing speed are very promising and the approach can be applied for the practical use. Security access control systems and automatic video surveillance systems are becoming increasingly important recently, and detecting human faces is one of the indispensable processes. In this paper, an approach is presented to detect faces in video surveillance. Firstly, both the skin-color and motion components are applied to extract skin-like regions. The skin-color segmentation algorithm is based on the BPNN (back-error-propagation neural network) and the motion component is obtained with frame difference algorithm. Secondly, the image is clustered into separated face candidates by using the region growing technique. Finally, the face candidates are further verified by the rule-based algorithm. Experiment results demonstrate that both the accuracy and processing speed are very promising and the approach can be applied for the practical use.
作者 宋红 石峰
出处 《Journal of Donghua University(English Edition)》 EI CAS 2003年第4期52-55,共4页 东华大学学报(英文版)
基金 This work is supported by the National Natural Science
关键词 安全访问控制系统 自动录像监视系统 人脸识别系统 肤色区域 模式识别系统 画面差别 肤色分割技术 face detection, skin-color segmentation, BPNN, frame difference, region growing
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