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Association of optical tracklets from a geosynchronous belt survey via the direct Bayesian admissible region approach
Authors:Kohei Fujimoto  Daniel J Scheeres  Johannes Herzog  Thomas Schildknecht
Institution:1. Department of Aerospace Engineering Sciences, The University of Colorado at Boulder, 431 UCB ECEE 166, Boulder, CO 80309-0431, USA;2. Department of Aerospace Engineering Sciences, The University of Colorado at Boulder, 429 UCB ECOT 611, Boulder, CO 80309-0429, USA;3. Universität Bern, Astronomisches Institut, Sidlerstrasse 5, CH-3012 Bern, Switzerland
Abstract:The direct Bayesian admissible region approach is an a priori state free measurement association and initial orbit determination technique for optical tracks. In this paper, we test a hybrid approach that appends a least squares estimator to the direct Bayesian method on measurements taken at the Zimmerwald Observatory of the Astronomical Institute at the University of Bern. Over half of the association pairs agreed with conventional geometric track correlation and least squares techniques. The remaining pairs cast light on the fundamental limits of conducting tracklet association based solely on dynamical and geometrical information.
Keywords:Space situational awareness  Too-short arc problem  Optical observations  Admissible region  Probability density function
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