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No True State-of-the-Art? OOD Detection Methods are Inconsistent across Datasets

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arxiv 2109.05554 v1 pith:G77HEYMK submitted 2021-09-12 cs.LG

classification cs.LG
keywords detectiondatasetsmethodsmethodanotherlow-datamahalanobisout-of-distribution
verification ladder T0 review T1 audit T2 compute T3 formal
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Out-of-distribution detection is an important component of reliable ML systems. Prior literature has proposed various methods (e.g., MSP (Hendrycks & Gimpel, 2017), ODIN (Liang et al., 2018), Mahalanobis (Lee et al., 2018)), claiming they are state-of-the-art by showing they outperform previous methods on a selected set of in-distribution (ID) and out-of-distribution (OOD) datasets. In this work, we show that none of these methods are inherently better at OOD detection than others on a standardized set of 16 (ID, OOD) pairs. We give possible explanations for these inconsistencies with simple toy datasets where whether one method outperforms another depends on the structure of the ID and OOD datasets in question. Finally, we show that a method outperforming another on a certain (ID, OOD) pair may not do so in a low-data regime. In the low-data regime, we propose a distance-based method, Pairwise OOD detection (POD), which is based on Siamese networks and improves over Mahalanobis by sidestepping the expensive covariance estimation step. Our results suggest that the OOD detection problem may be too broad, and we should consider more specific structures for leverage.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A Recipe for Causal Graph Regression: Confounding Effects Revisited

    cs.LG 2025-07 conditional novelty 6.0 of 10

    The paper proposes a contrastive-learning-based causal graph regression framework that explicitly models the predictive power of confounding subgraphs and achieves state-of-the-art OOD generalization on graph regressi...

  2. Improving Out-of-Distribution Detection via Dynamic Covariance Calibration

    cs.CV 2025-06 conditional novelty 6.0 of 10

    A dynamic covariance adjustment that contracts the Mahalanobis metric along each test feature's residual-space direction improves OOD detection over static priors on several backbones.

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