Distribution-Free, Risk-Controlling Prediction Sets
Bates, Stephen, Angelopoulos, Anastasios, Lei, Lihua, Malik, Jitendra, Jordan, Michael I.
To communicate instance-wise uncertainty for prediction tasks, we show how to generate set-valued predictions for black-box predictors that control the expected loss on future test points at a user-specified level. Our approach provides explicit finite-sample guarantees for any dataset by using a holdout set to calibrate the size of the prediction sets. This framework enables simple, distribution-free, rigorous error control for many tasks, and we demonstrate it in five large-scale machine learning problems: (1) classification problems where some mistakes are more costly than others; (2) multi-label classification, where each observation has multiple associated labels; (3) classification problems where the labels have a hierarchical structure; (4) image segmentation, where we wish to predict a set of pixels containing an object of interest; and (5) protein structure prediction. Lastly, we discuss extensions to uncertainty quantification for ranking, metric learning and distributionally robust learning.
Jan-7-2021
- Country:
- Europe > Ukraine (0.04)
- Asia > Middle East
- Jordan (0.04)
- Genre:
- Research Report (1.00)
- Industry:
- Health & Medicine
- Pharmaceuticals & Biotechnology (0.49)
- Therapeutic Area (0.46)
- Diagnostic Medicine > Imaging (0.45)
- Health & Medicine
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