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Dynamic Inversion based Control of a Docking MechanismThe problem of position and attitude control of the Stewart platform based docking mechanism is considered motivated by its future application in space missions requiring the autonomous docking capability. The control design is initiated based on the framework of the intelligent flight control architecture being developed at NASA Ames Research Center. In this paper, the baseline position and attitude control system is designed using dynamic inversion with proportional-integral augmentation. The inverse dynamics uses a Newton-Euler formulation that includes the platform dynamics, the dynamics of the individual legs along with viscous friction in the joints. Simulation results are presented using forward dynamics simulated by a commercial physics engine that builds the system as individual elements with appropriate joints and uses constrained numerical integration,
Document ID
20070004636
Acquisition Source
Ames Research Center
Document Type
Conference Paper
Authors
Kulkarni, Nilesh V.
(QSS Group, Inc. Moffett Field, CA, United States)
Ippolito, Corey
(QSS Group, Inc. Moffett Field, CA, United States)
Krishnakumar, Kalmanje
(NASA Ames Research Center Moffett Field, CA, United States)
Date Acquired
August 24, 2013
Publication Date
January 1, 2006
Subject Category
Spacecraft Design, Testing And Performance
Meeting Information
Meeting: AIAA GN&C
Location: Keystone, CO
Country: United States
Start Date: August 21, 2006
End Date: August 24, 2006
Distribution Limits
Public
Copyright
Public Use Permitted.
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