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Adversarial Multi-Task Learning for Disentangling Timbre and Pitch in Singing Voice Synthesis

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arxiv 2206.11558 v2 pith:H7MEGV3M submitted 2022-06-23 eess.AS cs.SD

classification eess.AScs.SD
keywords modelfeaturesparametricsingingvocoderapproachpitchtimbre
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Recently, deep learning-based generative models have been introduced to generate singing voices. One approach is to predict the parametric vocoder features consisting of explicit speech parameters. This approach has the advantage that the meaning of each feature is explicitly distinguished. Another approach is to predict mel-spectrograms for a neural vocoder. However, parametric vocoders have limitations of voice quality and the mel-spectrogram features are difficult to model because the timbre and pitch information are entangled. In this study, we propose a singing voice synthesis model with multi-task learning to use both approaches -- acoustic features for a parametric vocoder and mel-spectrograms for a neural vocoder. By using the parametric vocoder features as auxiliary features, the proposed model can efficiently disentangle and control the timbre and pitch components of the mel-spectrogram. Moreover, a generative adversarial network framework is applied to improve the quality of singing voices in a multi-singer model. Experimental results demonstrate that our proposed model can generate more natural singing voices than the single-task models, while performing better than the conventional parametric vocoder-based model.

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  1. SmoothSinger: A Conditional Diffusion Model for Singing Voice Synthesis with Multi-Resolution Architecture

    cs.SD 2025-06 conditional novelty 5.0 of 10

    A reference-guided diffusion model with a low-frequency upsampling module achieves marginal quality improvements over prior SVS baselines on Opencpop, with significant caveats about statistical significance and reprod...

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