← 返回论文检索
ICLR 2026PosterAccept (Poster)

TESSAR: Geometry-Aware Active Regression via Dynamic Voronoi Tessellation

Seong Jin Cho, Gwangsu Kim, Junghyun Lee, Hee Suk Yoon, Joshua Tian Jin Tee, Chang Yoo

Korea Institute of Oriental Medicine · KAIST & Jeonbuk National University (current) · KAIST · Korea Advanced Institute of Science and Technology (KAIST) · Korea Advanced Institute of Science & Technology · Korea Advanced Institute of Science and Technology

PDF 由论文原始站点提供,PaperCompass 不保存论文文件。

摘要

Active learning improves training efficiency by selectively querying the most informative samples for labeling. While it naturally fits classification tasks–where informative samples tend to lie near the decision boundary–its application to regression is less straightforward, as information is distributed across the entire dataset. Distance-based sampling is commonly used to promote diversity but tends to overemphasize peripheral regions while neglecting dense, informative interior regions. To address this, we propose a Voronoi-based active learning framework that leverages geometric structure for sample selection. Central to our method is the Voronoi-based Least Disagree Metric (VLDM), which estimates a sample’s proximity to Voronoi faces by measuring how often its cell assignment changes under perturbations of the labeled sites. We further incorporate a distance-based term to capture the periphery and a Voronoi-derived density score to reflect data representativity. The resulting algorithm, *TESSAR* (TESsellation-based Sampling for Active Regression), unifies interior coverage, peripheral exploration, and representativity into a single acquisition score. Experiments on various benchmarks demonstrate that TESSAR consistently achieves competitive or superior performance compared to prior state-of-the-art baselines.