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Statistical Significance of Feature Importance Rankings

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arxiv 2401.15800 v5 pith:PMZHJVL2 submitted 2024-01-28 stat.ML cs.LG

classification stat.MLcs.LG
keywords featuresimportancefeatureimportantordersamplingscoresalgorithms
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abstract

Feature importance scores are ubiquitous tools for understanding the predictions of machine learning models. However, many popular attribution methods suffer from high instability due to random sampling. Leveraging novel ideas from hypothesis testing, we devise techniques that ensure the most important features are correct with high-probability guarantees. These assess the set of $K$ top-ranked features, as well as the order of its elements. Given a set of local or global importance scores, we demonstrate how to retrospectively verify the stability of the highest ranks. We then introduce two efficient sampling algorithms that identify the $K$ most important features, perhaps in order, with probability exceeding $1-\alpha$. The theoretical justification for these procedures is validated empirically on SHAP and LIME.

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Cited by 1 Pith paper

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

  1. Evaluating the stability of model explanations in instance-dependent cost-sensitive credit scoring

    cs.LG 2025-09 conditional novelty 5.0 of 10

    Cost-sensitive credit models improve cost efficiency but produce less stable SHAP and LIME explanations, especially when the training data are imbalanced.

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