TY - JOUR
T1 - Joint tracklet association and spatial calibration for space-based optical observations
AU - JIANG, Yihang
AU - CAI, Han
AU - YANG, Yang
AU - SUN, Xiucong
AU - ZHANG, Jingrui
AU - GU, Xiansong
N1 - Publisher Copyright:
© 2025 The Author(s)
PY - 2026/7
Y1 - 2026/7
N2 - Within the domain of Space Situational Awareness (SSA), tracklet association is a critical step for accurate orbit determination. Conventional approaches typically assume perfectly calibrated observations, thereby neglecting the interdependence between tracklet association and spatial calibration. For space-based optical sensors, spatial deviations induced by spacecraft attitude errors further exacerbate this challenge. Incorrect associations lead to inaccurate calibration, and vice versa, forming a vicious cycle that degrades orbit tracking accuracy and undermines SSA reliability. To overcome these challenges, this paper proposes a joint tracklet association and spatial calibration approach for space-based optical observations. By integrating both processes into a unified optimization framework with iterative feedback, the proposed method enables accurate association and calibration simultaneously. Simulation results verify its effectiveness and demonstrate its potential to enhance the accuracy, robustness, and safety of space object tracking.
AB - Within the domain of Space Situational Awareness (SSA), tracklet association is a critical step for accurate orbit determination. Conventional approaches typically assume perfectly calibrated observations, thereby neglecting the interdependence between tracklet association and spatial calibration. For space-based optical sensors, spatial deviations induced by spacecraft attitude errors further exacerbate this challenge. Incorrect associations lead to inaccurate calibration, and vice versa, forming a vicious cycle that degrades orbit tracking accuracy and undermines SSA reliability. To overcome these challenges, this paper proposes a joint tracklet association and spatial calibration approach for space-based optical observations. By integrating both processes into a unified optimization framework with iterative feedback, the proposed method enables accurate association and calibration simultaneously. Simulation results verify its effectiveness and demonstrate its potential to enhance the accuracy, robustness, and safety of space object tracking.
KW - Initial orbit determination
KW - Space debris
KW - Space situational awareness
KW - Spatial calibration
KW - Tracklet association
UR - https://www.scopus.com/pages/publications/105041568663
U2 - 10.1016/j.cja.2025.104039
DO - 10.1016/j.cja.2025.104039
M3 - Article
AN - SCOPUS:105041568663
SN - 1000-9361
VL - 39
JO - Chinese Journal of Aeronautics
JF - Chinese Journal of Aeronautics
IS - 7
M1 - 104039
ER -