REBORN: Reinforcement-Learned Boundary Segmentation with Iterative Training for Unsupervised ASR

Abstract

Unsupervised automatic speech recognition (ASR) aims to learn the mapping between the speech signal and its corresponding textual transcription without the supervision of paired speech-text data. A word/phoneme in the speech signal is represented by a segment of speech signal with variable length and unknown boundary, and this segmental structure makes learning the mapping between speech and text challenging, especially without paired data. In this paper, we propose REBORN, Reinforcement-Learned Boundary Segmentation with Iterative Training for Unsupervised ASR. REBORN alternates between (1) training a segmentation model that predicts the boundaries of the segmental structures in speech signals and (2) training the phoneme prediction model, whose input is a segmental structure segmented by the segmentation model, to predict a phoneme transcription. Since supervised data for training the segmentation model is not available, we use reinforcement learning to train the segmentation model to favor segmentations that yield phoneme sequence predictions with a lower perplexity. We conduct extensive experiments and find that under the same setting, REBORN outperforms all prior unsupervised ASR models on LibriSpeech, TIMIT, and five non-English languages in Multilingual LibriSpeech. We comprehensively analyze why the boundaries learned by REBORN improve the unsupervised ASR performance.

Cite

Text

Tseng et al. "REBORN: Reinforcement-Learned Boundary Segmentation with Iterative Training for Unsupervised ASR." Neural Information Processing Systems, 2024. doi:10.52202/079017-4110

Markdown

[Tseng et al. "REBORN: Reinforcement-Learned Boundary Segmentation with Iterative Training for Unsupervised ASR." Neural Information Processing Systems, 2024.](https://mlanthology.org/neurips/2024/tseng2024neurips-reborn/) doi:10.52202/079017-4110

BibTeX

@inproceedings{tseng2024neurips-reborn,
  title     = {{REBORN: Reinforcement-Learned Boundary Segmentation with Iterative Training for Unsupervised ASR}},
  author    = {Tseng, Liang-Hsuan and Hu, En-Pei and Chiang, Cheng-Han and Tseng, Yuan and Lee, Hung-yi and Lee, Lin-shan and Sun, Shao-Hua},
  booktitle = {Neural Information Processing Systems},
  year      = {2024},
  doi       = {10.52202/079017-4110},
  url       = {https://mlanthology.org/neurips/2024/tseng2024neurips-reborn/}
}