NAACL 2025findings1 citations

Comprehensive Layer-wise Analysis of SSL Models for Audio Deepfake Detection

Yassine El Kheir, Younes Samih, Suraj Maharjan, Tim Polzehl, Sebastian Möller

Abstract

This paper conducts a comprehensive layer-wise analysis of self-supervised learning (SSL) models for audio deepfake detection across diverse contexts, including multilingual datasets (English, Chinese, Spanish), partial, song, and scene-based deepfake scenarios. By systematically evaluating the contributions of different transformer layers, we uncover critical insights into model behavior and performance. Our findings reveal that lower layers consistently provide the most discriminative features, while higher layers capture less relevant information. Notably, all models achieve competitive equal error rate (EER) scores even when employing a reduced number of layers. This indicates that we can reduce computational costs and increase the inference speed of detecting deepfakes by utilizing only a few lower layers. This work enhances our understanding of SSL models in deepfake detection, offering valuable insights applicable across varied linguistic and contextual settings. Our models and code are publicly available at https://github.com/Yaselley/SSL_Layerwise_Deepfake.

BibTeX
@inproceedings{el-kheir-etal-2025-comprehensive,
    title = "Comprehensive Layer-wise Analysis of {SSL} Models for Audio Deepfake Detection",
    author = {El Kheir, Yassine  and
      Samih, Younes  and
      Maharjan, Suraj  and
      Polzehl, Tim  and
      M{\"o}ller, Sebastian},
    editor = "Chiruzzo, Luis  and
      Ritter, Alan  and
      Wang, Lu",
    booktitle = "Findings of the Association for Computational Linguistics: NAACL 2025",
    month = apr,
    year = "2025",
    address = "Albuquerque, New Mexico",
    publisher = "Association for Computational Linguistics",
    url = "https://aclanthology.org/2025.findings-naacl.227/",
    pages = "4070--4082",
    ISBN = "979-8-89176-195-7"
}
Comprehensive Layer-wise Analysis of SSL Models for Audio Deepfake Detection · NAACL 2025