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A general model for attitude determination error analysisAn overview is given of a comprehensive approach to filter and dynamics modeling for attitude determination error analysis. The models presented include both batch least-squares and sequential attitude estimation processes for both spin-stabilized and three-axis stabilized spacecraft. The discussion includes a brief description of a dynamics model of strapdown gyros, but it does not cover other sensor models. Model parameters can be chosen to be solve-for parameters, which are assumed to be estimated as part of the determination process, or consider parameters, which are assumed to have errors but not to be estimated. The only restriction on this choice is that the time evolution of the consider parameters must not depend on any of the solve-for parameters. The result of an error analysis is an indication of the contributions of the various error sources to the uncertainties in the determination of the spacecraft solve-for parameters. The model presented gives the uncertainty due to errors in the a priori estimates of the solve-for parameters, the uncertainty due to measurement noise, the uncertainty due to dynamic noise (also known as process noise or measurement noise), the uncertainty due to the consider parameters, and the overall uncertainty due to all these sources of error.
Document ID
19890006564
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Markley, F. Landis
(NASA Goddard Space Flight Center Greenbelt, MD., United States)
Seidewitz, ED
(NASA Goddard Space Flight Center Greenbelt, MD., United States)
Nicholson, Mark
(Computer Sciences Corp. Lanham, MD., United States)
Date Acquired
September 5, 2013
Publication Date
September 1, 1988
Publication Information
Publication: Flight Mechanics(Estimation Theory Symposium 1988
Subject Category
Astrodynamics
Accession Number
89N15935
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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