Success of Uncertainty-Aware Deep Models Depends on Data Manifold Geometry
Machine Learning
2022-08-09 v2
Abstract
For responsible decision making in safety-critical settings, machine learning models must effectively detect and process edge-case data. Although existing works show that predictive uncertainty is useful for these tasks, it is not evident from literature which uncertainty-aware models are best suited for a given dataset. Thus, we compare six uncertainty-aware deep learning models on a set of edge-case tasks: robustness to adversarial attacks as well as out-of-distribution and adversarial detection. We find that the geometry of the data sub-manifold is an important factor in determining the success of various models. Our finding suggests an interesting direction in the study of uncertainty-aware deep learning models.
Keywords
Cite
@article{arxiv.2208.01705,
title = {Success of Uncertainty-Aware Deep Models Depends on Data Manifold Geometry},
author = {Mark Penrod and Harrison Termotto and Varshini Reddy and Jiayu Yao and Finale Doshi-Velez and Weiwei Pan},
journal= {arXiv preprint arXiv:2208.01705},
year = {2022}
}