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cs.AI updates on arXiv.org

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Cluster-Specific Localized Drift Detection for Efficient ...
[Submitted on 20 Jun 2026] · 2026-06-23 · via cs.AI updates on arXiv.org

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Abstract:Machine learning systems deployed in dynamic environments frequently operate under nonstationary data distributions, where controlled distribution shift can progressively degrade predictive performance. However, many widely used tabular benchmark datasets lack explicit temporal structure, limiting reproducible evaluation of drift adaptation methods. This work proposes a cluster-induced distribution shift simulation framework that transforms static tabular datasets into controlled evolving data streams through structured perturbations across featurespace partitions. Using this framework, six adaptation strategies are systematically evaluated: static learning, sliding-window retraining, global ADWIN retraining, cluster-local ADWIN retraining, random subspace drift detection, and feature-partitioned drift detection. Experiments are conducted on five benchmark datasets covering both classification and regression tasks using diverse predictive model families, including linear models, k-Nearest Neighbours, tree ensembles, boosting methods, and adaptive online learners.

Submission history

From: Nikolaos Polatidis Dr [view email]
[v1] Sat, 20 Jun 2026 13:02:42 UTC (9,206 KB)