Title :
Robust blurred face recognition using sample-wise kernel estimation and random compressed multi-scale local binary pattern histograms
Author :
Guangling Sun ; Zhi Liu
Author_Institution :
Sch. of Commun. & Inf. Eng., Shanghai Univ., Shanghai, China
Abstract :
Robust face recognition from blurred images is an important and challenging problem. We propose sample-wise kernel estimation (SWKE). For each sharp gallery sample, an optimal blur kernel making the distance between probe and corresponding blurred sample minimum is estimated. Then, the kernel is applied to blur the sharp gallery sample. All such blurred samples compose the adaptive blurred sample set acting as references during recognition. Next, we present random compressed multi-scale local binary pattern histograms (RCMSLBPH). Due to the sparseness of the histogram of each sub-region and each feature image, it is possible to accomplish large-margin dimensionality reduced without impairing great information loss by using random Gaussian projection matrix. Finally, we design two stage framework involving coarse recognition and fine recognition to obtain an optimized effectiveness-efficiency trade-off. The experimental results confirm the improvement of the proposed SWKE, RCMSLBPH and two stage framework on public face database recognition.
Keywords :
Gaussian processes; estimation theory; face recognition; image restoration; matrix algebra; operating system kernels; random processes; RCMSLBPH; SWKE; adaptive blurred sample set; coarse recognition; effectiveness-efficiency trade-off optimization; feature image; fine recognition; image deblurring; information loss; large-margin dimensionality reduction; optimal blur kernel; public face database recognition; random Gaussian projection matrix; random compressed multiscale local binary pattern histograms; robust blurred image face recognition; sample-wise kernel estimation; sharp gallery sample; stage framework; subregion histogram; Estimation; Face; Face recognition; Image coding; Kernel; Probes; Robustness; blurred face recognition; local binary pattern; random compression; sample-wise kernel estimation;
Conference_Titel :
Image Processing (ICIP), 2014 IEEE International Conference on
Conference_Location :
Paris
DOI :
10.1109/ICIP.2014.7025066