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Planetary Probe Entry Atmosphere Estimation Using Synthetic Air Data SystemThis paper develops an atmospheric state estimator based on inertial acceleration and angular rate measurements combined with a vehicle aerodynamic model. The approach uses the navigation state of the vehicle to recast the vehicle aerodynamic model to be a function solely of the atmospheric state. Force and moment measurements are based on vehicle sensed accelerations and angular rates. These measurements are combined with an aerodynamic model and a Kalman–Schmidt filter to estimate the atmospheric conditions. The method is applied to data from the Mars Science Laboratory mission, which landed the Curiosity rover on the surface of Mars in August 2012. The results of the estimation algorithm are compared with results from a flush air data sensing algorithm based on onboard pressure measurements on the vehicle forebody. The comparison indicates that the proposed method provides estimates consistent with the air data measurements, without the use of pressure transducers. Implications for future missions such as the Mars 2020 entry capsule are described.
Document ID
20190025850
Acquisition Source
Langley Research Center
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Karlgaard, Chris
(Analytical Mechanics Associates, Inc. Hampton, VA, United States)
Schoenenberger, Mark
(NASA Langley Research Center Hampton, VA, United States)
Date Acquired
June 11, 2019
Publication Date
December 15, 2017
Publication Information
Publication: Journal of Spacecraft and Rockets
Publisher: American Institute of Aeronautics and Astronautics
Volume: 55
Issue: 3
ISSN: 0022-4650
e-ISSN: 1533-6794
Subject Category
Lunar And Planetary Science And Exploration
Report/Patent Number
NF1676L-26438
Report Number: NF1676L-26438
E-ISSN: 1533-6794
ISSN: 0022-4650
Funding Number(s)
WBS: 406979.01.07.06
PROJECT: STMD_406979
Distribution Limits
Public
Copyright
Public Use Permitted.
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