English

NASTAR: Noise Adaptive Speech Enhancement with Target-Conditional Resampling

Audio and Speech Processing 2022-06-22 v1 Machine Learning

Abstract

For deep learning-based speech enhancement (SE) systems, the training-test acoustic mismatch can cause notable performance degradation. To address the mismatch issue, numerous noise adaptation strategies have been derived. In this paper, we propose a novel method, called noise adaptive speech enhancement with target-conditional resampling (NASTAR), which reduces mismatches with only one sample (one-shot) of noisy speech in the target environment. NASTAR uses a feedback mechanism to simulate adaptive training data via a noise extractor and a retrieval model. The noise extractor estimates the target noise from the noisy speech, called pseudo-noise. The noise retrieval model retrieves relevant noise samples from a pool of noise signals according to the noisy speech, called relevant-cohort. The pseudo-noise and the relevant-cohort set are jointly sampled and mixed with the source speech corpus to prepare simulated training data for noise adaptation. Experimental results show that NASTAR can effectively use one noisy speech sample to adapt an SE model to a target condition. Moreover, both the noise extractor and the noise retrieval model contribute to model adaptation. To our best knowledge, NASTAR is the first work to perform one-shot noise adaptation through noise extraction and retrieval.

Keywords

Cite

@article{arxiv.2206.09058,
  title  = {NASTAR: Noise Adaptive Speech Enhancement with Target-Conditional Resampling},
  author = {Chi-Chang Lee and Cheng-Hung Hu and Yu-Chen Lin and Chu-Song Chen and Hsin-Min Wang and Yu Tsao},
  journal= {arXiv preprint arXiv:2206.09058},
  year   = {2022}
}

Comments

Accepted to Interspeech 2022

R2 v1 2026-06-24T11:55:43.495Z