Title :
Human detection based on CENTRIST and scale of edge selection
Author :
Changyou Deng ; Hua Yang ; Hang Su
Author_Institution :
Electr. Eng. Dept., Shanghai Jiao Tong Univ., Shanghai, China
Abstract :
In this paper we propose human detection algorithm based on CENTRIST visual descriptor and scale of edge selection. Contour is the most feasible method to detect human object, and the sign of neighbor pixel is the key of contours. CENTRIST feature is particularly suitable for human detection since it obtains the sign information and contours could be represented precisely by feature vectors. However, CENTRIST descriptor is based on Sobel edge detection and is always challenged by object with local texture inside and complex background, such as a man in a tweed suit or beside tree and leaves. To address this issue, we introduce an improved RS-edge based CENTRIST, which keeps the contours most salient to people visual system and removes local texture. A linear SVM classifier is used to detect human object based on descriptors above. Experiments on INRIA datasets and real video surveillance are conducted to validate the performance of detector. Moreover, the human detecting algorithm has been ported onto float-point DSP of embedded DM8168 multimedia processing platform in real classroom recording system to detecting teacher.
Keywords :
edge detection; embedded systems; image representation; image texture; object detection; support vector machines; video surveillance; CENTRIST visual descriptor; INRIA datasets; Sobel edge detection; edge selection; embedded DM8168 multimedia processing platform; feature vectors; float-point DSP; human object detection; linear SVM classifier; local texture; neighbor pixel; people visual system; real video surveillance; sign information; Detectors; Digital signal processing; Feature extraction; Image edge detection; Image resolution; Support vector machines; Surveillance; CENTRIST; Human detection; float-point DSP; multimedia processing platform; scale of edge;
Conference_Titel :
Broadband Multimedia Systems and Broadcasting (BMSB), 2014 IEEE International Symposium on
Conference_Location :
Beijing
DOI :
10.1109/BMSB.2014.6873531