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Active Control Points-based 6DoF Pose Tracking for Industrial Metal Objects

Chentao Shen
Ding Pan
Mingyu Mei
Zaixing He
Xinyue Zhao
Main:8 Pages
8 Figures
Bibliography:1 Pages
Appendix:1 Pages
Abstract

Visual pose tracking is playing an increasingly vital role in industrial contexts in recent years. However, the pose tracking for industrial metal objects remains a challenging task especially in the real world-environments, due to the reflection characteristic of metal objects. To address this issue, we propose a novel 6DoF pose tracking method based on active control points. The method uses image control points to generate edge feature for optimization actively instead of 6DoF pose-based rendering, and serve them as optimization variables. We also introduce an optimal control point regression method to improve robustness. The proposed tracking method performs effectively in both dataset evaluation and real world tasks, providing a viable solution for real-time tracking of industrial metal objects. Our source code is made publicly available at:this https URL.

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@article{shen2025_2507.01478,
  title={ Active Control Points-based 6DoF Pose Tracking for Industrial Metal Objects },
  author={ Chentao Shen and Ding Pan and Mingyu Mei and Zaixing He and Xinyue Zhao },
  journal={arXiv preprint arXiv:2507.01478},
  year={ 2025 }
}
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