4.7 Article

Real-Time Model-Based Monocular Pose Tracking for an Asteroid by Contour Fitting

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TAES.2020.3044116

关键词

Solar system; Solid modeling; Feature extraction; Target tracking; Image edge detection; Fitting; Cameras; Contour of asteroid image; geometric fitting; Kalman filter; pose tracking; tracking initialization

资金

  1. National Natural Science Foundation of China [61703017, 81661168015]
  2. Post-Doctoral Innovation program [BX201600008]
  3. [JCYJ20160331193229720]
  4. [JCYJ20170307165328836]
  5. [ZDSYS201703031711426]

向作者/读者索取更多资源

This article introduces an innovative framework for real-time pose tracking of asteroids using their contour information in the image. The tracking is initialized with distance-based template matching and contour-based pose optimization, and the pose is obtained in real time by fitting the asteroid CAD model over the contour of the image with M-estimation. Experimental results confirm the accuracy and efficiency of the proposed method.
This article presents an innovative framework of real-time vision-based pose tracking for asteroid using the contour information of the asteroid image. At the first-time instant, the tracking is initialized by the distance-based template matching and contour-based pose optimization. Subsequently, at each time instant, with the prediction of the extended Kalman filter (EKF) as initial guess, the pose of the asteroid is obtained in real time by geometrically fitting the contour of the projected asteroid CAD model over the contour of the asteroid image with M-estimation. The variance of the pose is calculated based on 1-order approximation inference, which enables EKF to generate the final pose estimation and predict the pose at the next time instant. Sufficient experiments validate the accuracy and the efficiency of the proposed method.

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