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Evidence of Vocal Tract Articulation in Self-Supervised Learning of Speech

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arxiv 2210.11723 v3 pith:ZXXAE3S5 submitted 2022-10-21 eess.AS cs.AIcs.SD

classification eess.AScs.AIcs.SD
keywords speechmodelsrepresentationsanalyseslinearanalysisarticulatorylearn
verification ladder T0 review T1 audit T2 compute T3 formal
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Recent self-supervised learning (SSL) models have proven to learn rich representations of speech, which can readily be utilized by diverse downstream tasks. To understand such utilities, various analyses have been done for speech SSL models to reveal which and how information is encoded in the learned representations. Although the scope of previous analyses is extensive in acoustic, phonetic, and semantic perspectives, the physical grounding by speech production has not yet received full attention. To bridge this gap, we conduct a comprehensive analysis to link speech representations to articulatory trajectories measured by electromagnetic articulography (EMA). Our analysis is based on a linear probing approach where we measure articulatory score as an average correlation of linear mapping to EMA. We analyze a set of SSL models selected from the leaderboard of the SUPERB benchmark and perform further layer-wise analyses on two most successful models, Wav2Vec 2.0 and HuBERT. Surprisingly, representations from the recent speech SSL models are highly correlated with EMA traces (best: r = 0.81), and only 5 minutes are sufficient to train a linear model with high performance (r = 0.77). Our findings suggest that SSL models learn to align closely with continuous articulations, and provide a novel insight into speech SSL.

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  1. Towards disentangling the contributions of articulation and acoustics in multimodal phoneme recognition

    cs.LG 2025-05 conditional novelty 5.0 of 10

    On a single-speaker MRI speech corpus, adding vocal-tract video to audio does not improve phoneme recognition, but attention analysis shows articulatory cues can lead acoustic cues in time.

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