ISCA Archive Interspeech 2015
ISCA Archive Interspeech 2015

Uncertainty propagation through deep neural networks

Ahmed Hussen Abdelaziz, Shinji Watanabe, John R. Hershey, Emmanuel Vincent, Dorothea Kolossa

In order to improve the ASR performance in noisy environments, distorted speech is typically pre-processed by a speech enhancement algorithm, which usually results in a speech estimate containing residual noise and distortion. Wemay also have some measures of uncertainty or variance of the estimate. Uncertainty decoding is a framework that utilizes this knowledge of uncertainty in the input features during acoustic model scoring. Such frameworks have been well explored for traditional probabilistic models, but their optimal use for deep neural network (DNN)-based ASR systems is not yet clear. In this paper, we study the propagation of observation uncertainties through the layers of a DNN-based acoustic model. Since this is intractable due to the nonlinearities of the DNN, we employ approximate propagation methods, including Monte Carlo sampling, the unscented transform, and the piecewise exponential approximation of the activation function, to estimate the distribution of acoustic scores. Finally, the expected value of the acoustic score distribution is used for decoding, which is shown to further improve the ASR accuracy on the CHiME database, relative to a highly optimized DNN baseline.

doi: 10.21437/Interspeech.2015-706

Cite as: Abdelaziz, A.H., Watanabe, S., Hershey, J.R., Vincent, E., Kolossa, D. (2015) Uncertainty propagation through deep neural networks. Proc. Interspeech 2015, 3561-3565, doi: 10.21437/Interspeech.2015-706

  author={Ahmed Hussen Abdelaziz and Shinji Watanabe and John R. Hershey and Emmanuel Vincent and Dorothea Kolossa},
  title={{Uncertainty propagation through deep neural networks}},
  booktitle={Proc. Interspeech 2015},