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Vulnerability Analysis of Face Morphing Attacks from Landmarks and Generative Adversarial Networks
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Morphing attacks is a threat to biometric systems where the biometric reference in an identity document can be altered. This form of attack presents an important issue in applications relying on identity documents such as border security or access control. Research in face morphing attack detection is developing rapidly, however very few datasets with several forms of attacks are publicly available. This paper bridges this gap by providing a new dataset with four different types of morphing attacks, based on OpenCV, FaceMorpher, WebMorph and a generative adversarial network (StyleGAN), generated with original face images from three public face datasets. We also conduct extensive experiments to assess the vulnerability of the state-of-the-art face recognition systems, notably FaceNet, VGG-Face, and ArcFace. The experiments demonstrate that VGG-Face, while being less accurate face recognition system compared to FaceNet, is also less vulnerable to morphing attacks. Also, we observed that na\"ive morphs generated with a StyleGAN do not pose a significant threat.
Forward citations
Cited by 3 Pith papers
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MorphUNet: Alpha-Controlled Biometric Transport for Diffusion-Based Face Morphing Attacks
Parent-separated dual cross-attention inside a diffusion U-Net yields stronger, more balanced two-identity face morphs than StableMorph, MIPGAN-II, and MorDIFF on FEI and FRLL.
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Facial Demorphing from a Single Morph Using a Latent Conditional GAN
A latent-space conditional GAN recovers the two constituent faces from a single morph, achieving near-perfect restoration on landmark-based morphs but collapsing to 38% on StyleGAN morphs.
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WaFusion: A Wavelet-Enhanced Diffusion Framework for Face Morph Generation
A hybrid wavelet-diffusion framework that morphs only the low-frequency wavelet sub-band to create efficient, high-quality face morphs.
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