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  4. Improving Deepfake Detectors against Real-world Perturbations with Amplitude-Phase Switch Augmentation
 
conference paper

Improving Deepfake Detectors against Real-world Perturbations with Amplitude-Phase Switch Augmentation

Lu, Yuhang  
•
Luo, Ruizhi
•
Ebrahimi, Touradj  
2023
Proceedings of SPIE
Applications of Digital Image Processing XLVI

In recent years, the remarkable progress in facial manipulation techniques has raised social concerns due to their potential malicious usage and has received considerable attention from both industry and academia. While current deep learning-based face forgery detection methods have achieved promising results, their performance often degrades drastically when they are tested in non-trivial situations under realistic perturbations. This paper proposes to leverage the information in the frequency domain, particularly the phase spectrum, to better differentiate between deepfakes and authentic images. Specifically, a new augmentation method called degradation-based amplitude-phase switch (DAPS) is proposed, which disregards the sensitive amplitude spectrum of a forged facial image and enforces the detection network to focus on phase components during the training process. Extensive evaluation results from a realistic assessment framework show that the proposed augmentation method significantly improves the robustness of two deepfake detectors analyzed and consistently outperform other augmentation approaches under various perturbations.

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Type
conference paper
DOI
10.1117/12.2676400
Author(s)
Lu, Yuhang  
Luo, Ruizhi
Ebrahimi, Touradj  
Date Issued

2023

Published in
Proceedings of SPIE
Volume

12674

Subjects

Deepfake detection

•

Data augmentation

•

Robustness

•

Face manipulation

URL
https://spie.org/optics-photonics/presentation/Improving-deepfake-detectors-against-real-world-perturbations-with-Amplitude-Phase/12674-1?SSO=1
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GR-EB  
Event nameEvent placeEvent date
Applications of Digital Image Processing XLVI

San Diego, California, USA

21 - 23 August 2023

Available on Infoscience
August 18, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/199956
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