English

Foundation Feature-Driven Online End-Effector Pose Estimation: A Marker-Free and Learning-Free Approach

Robotics 2025-03-19 v1 Computer Vision and Pattern Recognition

Abstract

Accurate transformation estimation between camera space and robot space is essential. Traditional methods using markers for hand-eye calibration require offline image collection, limiting their suitability for online self-calibration. Recent learning-based robot pose estimation methods, while advancing online calibration, struggle with cross-robot generalization and require the robot to be fully visible. This work proposes a Foundation feature-driven online End-Effector Pose Estimation (FEEPE) algorithm, characterized by its training-free and cross end-effector generalization capabilities. Inspired by the zero-shot generalization capabilities of foundation models, FEEPE leverages pre-trained visual features to estimate 2D-3D correspondences derived from the CAD model and target image, enabling 6D pose estimation via the PnP algorithm. To resolve ambiguities from partial observations and symmetry, a multi-historical key frame enhanced pose optimization algorithm is introduced, utilizing temporal information for improved accuracy. Compared to traditional hand-eye calibration, FEEPE enables marker-free online calibration. Unlike robot pose estimation, it generalizes across robots and end-effectors in a training-free manner. Extensive experiments demonstrate its superior flexibility, generalization, and performance.

Keywords

Cite

@article{arxiv.2503.14051,
  title  = {Foundation Feature-Driven Online End-Effector Pose Estimation: A Marker-Free and Learning-Free Approach},
  author = {Tianshu Wu and Jiyao Zhang and Shiqian Liang and Zhengxiao Han and Hao Dong},
  journal= {arXiv preprint arXiv:2503.14051},
  year   = {2025}
}
R2 v1 2026-06-28T22:24:57.044Z