Ultra-Precision 6DoF Pose Estimation Using 2-D Interpolated Discrete Fourier Transform
Guowei Shi, Zian Mao, Peisen Huang
Abstract
Ultra-precision estimation of 6DoF pose is essential in applications such as semiconductor manufacturing and nanoscale manipulation. Conventional vision-based techniques are often hampered by sensitivity to defocus and limited estimation accuracy. In this paper, we propose a novel two-dimensional interpolated Discrete Fourier Transform (2D-IpDFT) method for robust 6DoF pose estimation using periodic patterns. We further develop a mathematical framework that links image parameters--phase and frequency--to 6DoF pose, which is applicable to both orthographic and quasi-orthographic imaging systems. Extensive experiments on a low-cost setup, featuring an industrial camera and an etched checkerboard pattern, demonstrate translation estimation accuracy at the nanometer level and rotation estimation accuracy at the microradian level.
BibTeX
@InProceedings{Shi_2025_ICCV,
author = {Shi, Guowei and Mao, Zian and Huang, Peisen},
title = {Ultra-Precision 6DoF Pose Estimation Using 2-D Interpolated Discrete Fourier Transform},
booktitle = {Proceedings of the IEEE/CVF International Conference on Computer Vision (ICCV)},
month = {October},
year = {2025},
pages = {5802-5810}
}