Two-Sample Testing with Missing Data via Energy Distance: Weighting and Imputation Approaches

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Main Authors: Aleksić, Danijel G., Milošević, Bojana
Format: Preprint
Published: 2025
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author Aleksić, Danijel G.
Milošević, Bojana
author_facet Aleksić, Danijel G.
Milošević, Bojana
contents In this paper, we address the problem of two-sample testing in the presence of missing data under a variety of missingness mechanisms. Our focus is on the well-known energy distance-based two-sample test. In addition to the standard complete-case approach, we propose a modification of the test statistic that incorporates all available data, utilizing appropriate weights. The asymptotic null distribution of the test statistic is derived and two resampling procedures for approximating the corresponding p-values are proposed. We also propose a new bootstrap method specifically designed for a test statistic based on samples completed via common imputation methods. Through an extensive simulation study, we compare all methods in terms of type I error control and statistical power across a set of sample sizes, dimensions, distributions, missingness mechanisms, and missingness rates. Based on these results, we provide general recommendations for each considered scenario.
format Preprint
id arxiv_https___arxiv_org_abs_2508_11421
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Two-Sample Testing with Missing Data via Energy Distance: Weighting and Imputation Approaches
Aleksić, Danijel G.
Milošević, Bojana
Methodology
Statistics Theory
Computation
62G10, 62G20, 62G09, 62D10
In this paper, we address the problem of two-sample testing in the presence of missing data under a variety of missingness mechanisms. Our focus is on the well-known energy distance-based two-sample test. In addition to the standard complete-case approach, we propose a modification of the test statistic that incorporates all available data, utilizing appropriate weights. The asymptotic null distribution of the test statistic is derived and two resampling procedures for approximating the corresponding p-values are proposed. We also propose a new bootstrap method specifically designed for a test statistic based on samples completed via common imputation methods. Through an extensive simulation study, we compare all methods in terms of type I error control and statistical power across a set of sample sizes, dimensions, distributions, missingness mechanisms, and missingness rates. Based on these results, we provide general recommendations for each considered scenario.
title Two-Sample Testing with Missing Data via Energy Distance: Weighting and Imputation Approaches
topic Methodology
Statistics Theory
Computation
62G10, 62G20, 62G09, 62D10
url https://arxiv.org/abs/2508.11421