Variational Imbalanced Regression: Fair Uncertainty Quantification via Probabilistic Smoothing

Abstract

Existing regression models tend to fall short in both accuracy and uncertainty estimation when the label distribution is imbalanced. In this paper, we propose a probabilistic deep learning model, dubbed variational imbalanced regression (VIR), which not only performs well in imbalanced regression but naturally produces reasonable uncertainty estimation as a byproduct. Different from typical variational autoencoders assuming I.I.D. representations (a data point's representation is not directly affected by other data points), our VIR borrows data with similar regression labels to compute the latent representation's variational distribution; furthermore, different from deterministic regression models producing point estimates, VIR predicts the entire normal-inverse-gamma distributions and modulates the associated conjugate distributions to impose probabilistic reweighting on the imbalanced data, thereby providing better uncertainty estimation. Experiments in several real-world datasets show that our VIR can outperform state-of-the-art imbalanced regression models in terms of both accuracy and uncertainty estimation. Code will soon be available at https://github.com/Wang-ML-Lab/variational-imbalanced-regression.

Cite

Text

Wang and Wang. "Variational Imbalanced Regression: Fair Uncertainty Quantification via Probabilistic Smoothing." Neural Information Processing Systems, 2023.

Markdown

[Wang and Wang. "Variational Imbalanced Regression: Fair Uncertainty Quantification via Probabilistic Smoothing." Neural Information Processing Systems, 2023.](https://mlanthology.org/neurips/2023/wang2023neurips-variational/)

BibTeX

@inproceedings{wang2023neurips-variational,
  title     = {{Variational Imbalanced Regression: Fair Uncertainty Quantification via Probabilistic Smoothing}},
  author    = {Wang, Ziyan and Wang, Hao},
  booktitle = {Neural Information Processing Systems},
  year      = {2023},
  url       = {https://mlanthology.org/neurips/2023/wang2023neurips-variational/}
}