Title :
Flame detection algorithm based on a saliency detection technique with prior information in the YCbCr color space
Author :
Zhao-Guang Liu ; Yang Yang ; Yun-Xia Liu
Author_Institution :
Shandong Provincial Key Lab. of Digital Media, Technol.Technology, Shandong Univ. of Finance & Econ., Jinan, China
Abstract :
Computer vision-based Are detection involves flame detection and smoke detection. This paper proposes a new flame detection algorithm, which is based on a saliency detection technique with prior information in color space. In still images and video sequences, an area containing a flame always attracts the attention because it is an exceptional event. Thus, to utilize the color information of flame pixels, the probability density function of the flame pixel color can be obtained using Parzen window nonparametric estimation. This prior probability density function is then fused with the saliency detection phase as top-down information so the flame candidate area can be extracted. According to the experimental results, our proposed method can reduce the number of false alarms greatly compared with an alternative algorithm, while it also ensures the accurate classification of positive samples. The classification performance of our proposed method was better than that of alternative algorithms.
Keywords :
computer vision; flames; image classification; image colour analysis; video signal processing; Parzen window nonparametric estimation; alternative algorithm; classification performance; color information; color space; computer vision; false alarms; flame detection algorithm; flame pixel color; prior information; probability density function; saliency detection technique; smoke detection; video sequences; Accuracy; Detection algorithms; Feature extraction; Fires; Image color analysis; Probability density function; Video sequences; YCbCr color space; flame detection; probability density function; saliency detection;
Conference_Titel :
Information Technology and Artificial Intelligence Conference (ITAIC), 2014 IEEE 7th Joint International
Print_ISBN :
978-1-4799-4420-0
DOI :
10.1109/ITAIC.2014.7065050