PaperScope
LIVE · 2026-10-05 05:40 UTC

Depth Hypothesis Guided Iterative Refinement for Event-Image Monocular Depth Estimation

Daikun Liu, Teng Wang, Changyin Sun

Latestcs.CLcs.LGcs.AIcs.CV
arXiv ID
2610.03439 v1
Category
Submitted
2026-10-02

Abstract

Event cameras hold excellent dynamic properties, showing great potential for monocular depth estimation (MDE). However, existing methods mainly improve performance by optimizing contextual features, but still struggle with the ill-posed and nonlinear nature of direct full-depth regression. In this paper, we propose HypoDepth, the first event-image monocular depth iterative refinement framework. By introducing a discrete Depth Hypothesis Volume (DHV), we transform the depth regression problem into a constrained depth search task. Specifically, we construct a 3D cost volume between the DHV features and contextual features and perform a multi-scale correlation search to guide stable residual optimization. This lightweight cost volume enables efficient global-to-local refinement across multi-resolution. Our method outperforms existing approaches on DSEC and MVSEC with state-of-the-art results and strong zero-shot generalization. Meanwhile, our tiny model achieves an excellent balance between accuracy and efficiency, enabling real-time performance on resource-limited devices.

Comment: 14 pages, 13 figures, conference

Journal: CVPR2026

arXiv abs page · PDF · same-day batch