Title
Face Anti-spoofing using Hybrid Residual Learning Framework
Abstract
Face spoofing attacks have received significant attention because of criminals who are developing different techniques such as warped photos, cut photos, 3D masks, etc. to easily fool the face recognition systems. In order to improve the security measures of biometric systems, deep learning models offer powerful solutions; but to attain the benefits of multilayer features remains a significant challenge. To alleviate this limitation, this paper presents a hybrid framework to build the feature representation by fusing ResNet with more discriminative power. First, two variants of the residual learning framework are selected as deep feature extractors to extract informative features. Second, the fullyconnected layers are used as separated feature descriptors. Third, PCA based Canonical correlation analysis (CCA) is proposed as a feature fusion strategy to combine relevant information and to improve the features' discrimination capacity. Finally, the support vector machine (SVM) is used to construct the final representation of facial features. Experimental results show that our proposed framework achieves a state-of-the-art performance without finetuning, data augmentation or coding strategy on benchmark databases, namely the MSU mobile face spoof database and the CASIA face anti-spoofing database.
Year
DOI
Venue
2019
10.1109/ICB45273.2019.8987283
2019 International Conference on Biometrics (ICB)
Keywords
Field
DocType
hybrid residual learning framework,face spoofing attacks,warped photos,cut photos,face recognition systems,security measures,biometric systems,deep learning models,multilayer features,feature representation,deep feature extractors,informative features,fully connected layers,feature fusion strategy,facial features,MSU mobile face spoof database,CASIA face anti-spoofing database,PCA based canonical correlation analysis,feature descriptors,3D masks,ResNet,support vector machine
Facial recognition system,Pattern recognition,Spoofing attack,Computer science,Canonical correlation,Support vector machine,Coding (social sciences),Artificial intelligence,Biometrics,Deep learning,Discriminative model
Conference
ISSN
ISBN
Citations 
2376-4201
978-1-7281-3641-7
0
PageRank 
References 
Authors
0.34
0
2
Name
Order
Citations
PageRank
Usman Muhammad100.34
Abdenour Hadid23305146.00