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Disentangled Representation with Dual-stage Feature Learning for Face Anti-spoofing
Conference paper

Disentangled Representation with Dual-stage Feature Learning for Face Anti-spoofing

Yu-Chun Wang, Chien-Yi Wang and Shang-Hong Lai
Proceedings - 2022 IEEE/CVF Winter Conference on Applications of Computer Vision, WACV 2022, pp.1234-1243
2022

Abstract

Biometrics Face Processing Biometrics Computer Vision and Pattern Recognition Computer Science Applications
As face recognition is widely used in diverse security-critical applications, the study of face anti-spoofing (FAS) has attracted more and more attention. Several FAS methods have achieved promising performance if the attack types in the testing data are included in the training data, while the performance significantly degrades for unseen attack types. It is essential to learn more generalized and discriminative features to prevent overfitting to pre-defined spoof attack types. This paper proposes a novel dual-stage disentangled representation learning method that can efficiently untangle spoof-related features from irrelevant ones. Un-like previous FAS disentanglement works with one-stage architecture, we found that the dual-stage training design can improve the training stability and effectively encode the features to detect unseen attack types. Our experiments show that the proposed method provides superior accuracy than the state-of-the-art methods on several cross-type FAS benchmarks.

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