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Shuttle tethered operations: The effect on orbital trajectory and inertial navigationThe first full scale test of a large tethered satellite system is planned. The Orbiter will be linked to a 500 kg payload by a 20 km tether, an action with a profound effect on the trajectory of the Orbiter. For the first time in the history of the Shuttle program, the vehicle will conduct prolonged operations with the center of mass of the orbiting system a significant distance from the center of mass of the Space Shuttle Orbiter, a violation of the fundamental assumption made in both the Orbiter ground-based and onboard navigation software. Inertial navigation of tethered operations with the Shuttle is further complicated by the presence of non-conservative forces in the system: Reaction Control System (RCS) translational effects, atmospheric drag, and electro-magnetic dynamics. These can couple with the conservative tether dynamics effects, and degrade the navigation software performance. The primary effects are examined on the Orbiter's trajectory, coupling by conservative forces during tethered operations, and the impact of both on the ability to meet inertial navigation constraints. The impact of electrodynamics, different RCS control modes, commanded attitudes, and attitude deadbands are presented. Operational guidelines which optimize successful mission navigation, and necessary navigation constraints are discussed.
Document ID
19900004109
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Lardas, Mark N.
(McDonnell-Douglas Astronautics Co. Houston, TX, United States)
Date Acquired
September 6, 2013
Publication Date
October 1, 1989
Publication Information
Publication: NASA, Goddard Space Flight Center, Flight Mechanics(Estimation Theory Symposium, 1989
Subject Category
Astrodynamics
Accession Number
90N13425
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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