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Multiple Testing Framework for Out-of-Distribution Detection

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abstract

We study the problem of Out-of-Distribution (OOD) detection, that is, detecting whether a learning algorithm's output can be trusted at inference time. While a number of tests for OOD detection have been proposed in prior work, a formal framework for studying this problem is lacking. We propose a definition for the notion of OOD that includes both the input distribution and the learning algorithm, which provides insights for the construction of powerful tests for OOD detection. We propose a multiple hypothesis testing inspired procedure to systematically combine any number of different statistics from the learning algorithm using conformal p-values. We further provide strong guarantees on the probability of incorrectly classifying an in-distribution sample as OOD. In our experiments, we find that threshold-based tests proposed in prior work perform well in specific settings, but not uniformly well across different types of OOD instances. In contrast, our proposed method that combines multiple statistics performs uniformly well across different datasets and neural networks.

fields

cs.LG 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Score Combining for Contrastive OOD Detection

cs.LG · 2025-01-21 · conditional · novelty 6.0

A GLRT-based score-combining rule slightly improves average AUROC and detection rate over CSI/SupCSI and classical p-value combination methods in dataset-vs-dataset and leave-one-class-out OOD experiments.

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  • Score Combining for Contrastive OOD Detection cs.LG · 2025-01-21 · conditional · none · ref 35 · internal anchor

    A GLRT-based score-combining rule slightly improves average AUROC and detection rate over CSI/SupCSI and classical p-value combination methods in dataset-vs-dataset and leave-one-class-out OOD experiments.