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Self-supervised Fine-tuning for Improved Content Representations by Speaker-invariant Clustering

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arxiv 2305.11072 v1 pith:Q33I4SSQ submitted 2023-05-18 cs.CL eess.AS

classification cs.CLeess.AS
keywords representationsself-supervisedspeechspinclusteringcontentfine-tuningspeaker-invariant
verification ladder T0 review T1 audit T2 compute T3 formal
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Self-supervised speech representation models have succeeded in various tasks, but improving them for content-related problems using unlabeled data is challenging. We propose speaker-invariant clustering (Spin), a novel self-supervised learning method that clusters speech representations and performs swapped prediction between the original and speaker-perturbed utterances. Spin disentangles speaker information and preserves content representations with just 45 minutes of fine-tuning on a single GPU. Spin improves pre-trained networks and outperforms prior methods in speech recognition and acoustic unit discovery.

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Cited by 1 Pith paper

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  1. FreeSVC: Towards Zero-shot Multilingual Singing Voice Conversion

    cs.SD 2025-01 conditional novelty 4.0 of 10

    FreeSVC combines a multilingual SPIN content extractor, ECAPA2 speaker embeddings, and language embeddings to improve zero-shot cross-lingual singing voice conversion over a ContentVec baseline.

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