Consistency-aware Self-Training for Iterative-based Stereo Matching

Feb 1, 2025·
Jingyi Zhou*
,
Peng Ye*
,
Haoyu Zhang
,
Jiakang Yuan (Project Leader)
,
Qiang Rao
,
YangChenXu Liu
,
Cailin Wu
,
Feng Xu
,
Tao Chen
· 0 min read
Abstract
Iterative-based methods have become mainstream in stereo matching due to their high performance. However, these methods heavily rely on labeled data and face challenges with unlabeled real-world data. To this end, we propose a consistency-aware self-training framework for iterativebased stereo matching for the first time, leveraging realworld unlabeled data in a teacher-student manner. We first observe that regions with larger errors tend to exhibit more pronounced oscillation characteristics during model prediction. Based on this, we introduce a novel consistencyaware soft filtering module to evaluate the reliability of teacher-predicted pseudo-labels, which consists of a multiresolution prediction consistency filter and an iterative prediction consistency filter to assess the prediction fluctuations of multiple resolutions and iterative optimization respectively. Further, we introduce a consistency-aware softweighted loss to adjust the weight of pseudo-labels accordingly, relieving the error accumulation and performance degradation problem due to incorrect pseudo-labels. Extensive experiments demonstrate that our method can improve the performance of various iterative-based stereo matching approaches in various scenarios. In particular, our method can achieve further enhancements over the current SOTA methods on several benchmark datasets.
Type
Publication
CVPR 2025
publications