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SINGER: Vivid Audio-driven Singing Video Generation with Multi-scale Spectral Diffusion Model

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arxiv 2412.03430 v1 pith:JSM6F2K5 submitted 2024-12-04 cs.CV cs.LGcs.SD

classification cs.CVcs.LGcs.SD
keywords singinggenerationvideomodeltalkingdifferencesfacemodels
verification ladder T0 review T1 audit T2 compute T3 formal
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Recent advancements in generative models have significantly enhanced talking face video generation, yet singing video generation remains underexplored. The differences between human talking and singing limit the performance of existing talking face video generation models when applied to singing. The fundamental differences between talking and singing-specifically in audio characteristics and behavioral expressions-limit the effectiveness of existing models. We observe that the differences between singing and talking audios manifest in terms of frequency and amplitude. To address this, we have designed a multi-scale spectral module to help the model learn singing patterns in the spectral domain. Additionally, we develop a spectral-filtering module that aids the model in learning the human behaviors associated with singing audio. These two modules are integrated into the diffusion model to enhance singing video generation performance, resulting in our proposed model, SINGER. Furthermore, the lack of high-quality real-world singing face videos has hindered the development of the singing video generation community. To address this gap, we have collected an in-the-wild audio-visual singing dataset to facilitate research in this area. Our experiments demonstrate that SINGER is capable of generating vivid singing videos and outperforms state-of-the-art methods in both objective and subjective evaluations.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Think2Sing: Orchestrating Structured Motion Subtitles for Singing-Driven 3D Head Animation

    cs.GR 2025-09 conditional novelty 6.0 of 10

    Think2Sing uses LLM-generated, time-aligned motion subtitles and a motion-intensity proxy to guide diffusion-based 3D head animation from singing audio and lyrics.

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