Dealing with Uncertainties in Initial Orbit DeterminationA method to deal with uncertainties in initial orbit determination (IOD) is presented. This is based on the use of Taylor differential algebra (DA) to nonlinearly map the observation uncertainties from the observation space to the state space. When a minimum set of observations is available DA is used to expand the solution of the IOD problem in Taylor series with respect to measurement errors. When more observations are available high order inversion tools are exploited to obtain full state pseudo-observations at a common epoch. The mean and covariance of these pseudo-observations are nonlinearly computed by evaluating the expectation of high order Taylor polynomials. Finally, a linear scheme is employed to update the current knowledge of the orbit. Angles-only observations are considered and simplified Keplerian dynamics adopted to ease the explanation. Three test cases of orbit determination of artificial satellites in different orbital regimes are presented to discuss the feature and performances of the proposed methodology.
Document ID
20150016034
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Armellin, Roberto (Politecnico di Milano Milan, Italy)
Di Lizia, Pierluigi (Politecnico di Milano Milan, Italy)
Zanetti, Renato (Draper (Charles Stark) Lab., Inc. Houston, TX, United States)
Date Acquired
August 14, 2015
Publication Date
August 9, 2015
Subject Category
Space Communications, Spacecraft Communications, Command And TrackingAstrodynamics