English

Neural Pitch-Shifting and Time-Stretching with Controllable LPCNet

Audio and Speech Processing 2021-10-07 v1 Sound

Abstract

Modifying the pitch and timing of an audio signal are fundamental audio editing operations with applications in speech manipulation, audio-visual synchronization, and singing voice editing and synthesis. Thus far, methods for pitch-shifting and time-stretching that use digital signal processing (DSP) have been favored over deep learning approaches due to their speed and relatively higher quality. However, even existing DSP-based methods for pitch-shifting and time-stretching induce artifacts that degrade audio quality. In this paper, we propose Controllable LPCNet (CLPCNet), an improved LPCNet vocoder capable of pitch-shifting and time-stretching of speech. For objective evaluation, we show that CLPCNet performs pitch-shifting of speech on unseen datasets with high accuracy relative to prior neural methods. For subjective evaluation, we demonstrate that the quality and naturalness of pitch-shifting and time-stretching with CLPCNet on unseen datasets meets or exceeds competitive neural- or DSP-based approaches.

Keywords

Cite

@article{arxiv.2110.02360,
  title  = {Neural Pitch-Shifting and Time-Stretching with Controllable LPCNet},
  author = {Max Morrison and Zeyu Jin and Nicholas J. Bryan and Juan-Pablo Caceres and Bryan Pardo},
  journal= {arXiv preprint arXiv:2110.02360},
  year   = {2021}
}

Comments

Submitted to ICASSP 2022