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WST-Graph: Topology-Preserving Wavelet Scattering Front-End for Speech Deepfake Detection
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Kwok-Ho Ng, Tingting Song, Bingwen Feng, Zhihua Xia

· 1 min read

ResearcharXiv cs.AI

WST-Graph: Topology-Preserving Wavelet Scattering Front-End for Speech Deepfake Detection

arXiv:2609.29372v1 Announce Type: cross Abstract: The acoustic front-end determines which forensic cues a speech deepfake detector can exploit. The wavelet scattering transform (WST) provides stable multiscale coefficients with explicit coordinates, yet direct flattening obscures the parent relation between paths. We introduce WST-Graph, reconstructing these paths as a sparse modulation-carrier grid for an AASIST graph backend. Modulation-level normalization and length-aware adaptive local attention pooling produce fixed relative-time representations while retaining the acoustic axes before learned adaptation. This yields a waveform-to-graph interface with a fixed, parameter-free WST. Our configurations remain competitive with AASIST while using approximately 60% fewer trainable parameters and show clear gains on selected out-of-domain benchmarks. These results underscore the value of preserving parent-child relations within the carrier-modulation topology when constructing a compact, physically grounded interface for graph-based speech deepfake detection. Code will be released at https://github.com/saki-ciallo/wst-graph.

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This story was published by arXiv cs.AI and written by Kwok-Ho Ng, Tingting Song, Bingwen Feng, Zhihua Xia. SyncAI.news shows a preview; the complete article is on the publisher's site.

Read the full story on arxiv.org

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