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On the Information Evolution and Sensor Deployment for Multispacecraft Cooperative Visual 3-D Sensing of Orbital Targets

  • Qier An
  • , Yuan Yuan
  • , Zexu Zhang
  • , Huaping Liu
  • , Xiaokui Yue*
  • *Corresponding author for this work
  • Northwestern Polytechnical University Xian
  • School of Astronautics, Harbin Institute of Technology
  • Tsinghua University

Research output: Contribution to journalArticlepeer-review

Abstract

Multispacecraft cooperative visual 3-D sensing is an essential technique in space-based optical space situational awareness to acquire the 3-D pose and structure of orbital targets, and how to optimize spacecraft deployment to improve sensing performance receives wide research concern. This article establishes a statistical framework for multispacecraft cooperative visual 3-D sensing of orbital targets under the natural fly-around mode from a perspective of information gains and studies both the sensing information evolution during orbital motion and the optimal orbit deployment of multiple spaceborne camera sensors on spacecrafts. Specifically, a Fisher information matrix (FIM)-based metric is first proposed to evaluate the anisotropic sensing property of spaceborne camera sensors. Then, the evolution of sensing information during orbital motion is characterized by closed-form expressions for the FIM contributed by visual observations captured by each spacecraft, with geometric interpretations given by information ellipsoid in the eigenspace. Based on the spatiotemporal complementarity of visual observations, we also determine the optimal orbit deployment of all the spaceborne camera sensors to improve the cooperative sensing performance of the orbital target and give a lower bound for sensing error through an extension without motion constraints. Numerical results validate the effectiveness of our theoretic results and the performance of our sensor deployment schemes and also reveal the impacts of orbital motion on visual sensing. Our work provides guidelines for subtle cooperative orbit design for specific sensing tasks.

Original languageEnglish
Pages (from-to)13227-13243
Number of pages17
JournalIEEE Sensors Journal
Volume24
Issue number8
DOIs
StatePublished - 15 Apr 2024
Externally publishedYes

Keywords

  • Fisher information matrix (FIM)
  • multispacecraft cooperation
  • orbital targets
  • sensor deployment
  • visual 3-D sensing

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