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Evolution of Flexible Multibody Dynamics for Simulation Applications Supporting Human SpaceflightDuring the course of transition from the Space Shuttle and International Space Station programs to the Orion and Journey to Mars exploration programs, a generic flexible multibody dynamics formulation and associated software implementation has evolved to meet an ever changing set of requirements at the NASA Johnson Space Center (JSC). Challenging problems related to large transitional topologies and robotic free-flyer vehicle capture/ release, contact dynamics, and exploration missions concept evaluation through simulation (e.g., asteroid surface operations) have driven this continued development. Coupled with this need is the requirement to oftentimes support human spaceflight operations in real-time. Moreover, it has been desirable to allow even more rapid prototyping of on-orbit manipulator and spacecraft systems, to support less complex infrastructure software for massively integrated simulations, to yield further computational efficiencies, and to take advantage of recent advances and availability of multi-core computing platforms. Since engineering analysis, procedures development, and crew familiarity/training for human spaceflight is fundamental to JSC's charter, there is also a strong desire to share and reuse models in both the non-realtime and real-time domains, with the goal of retaining as much multibody dynamics fidelity as possible. Three specific enhancements are reviewed here: (1) linked list organization to address large transitional topologies, (2) body level model order reduction, and (3) parallel formulation/implementation. This paper provides a detailed overview of these primary updates to JSC's flexible multibody dynamics algorithms as well as a comparison of numerical results to previous formulations and associated software.
Document ID
20160005254
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
An Huynh
(METECS Houston, Texas, United States)
Thomas A Brain
(METECS Houston, Texas, United States)
John R MacLean
(METECS Houston, Texas, United States)
Leslie J Quiocho
(Johnson Space Center Houston, United States)
Date Acquired
April 21, 2016
Publication Date
December 5, 2016
Publication Information
Publication: Proceedings of the ASME International Design Engineering Technical Conferences and Computers and Information in Engineering
Publisher: American Society of Mechanical Engineers
Volume: 6
ISBN: 9780791850183
Subject Category
Spacecraft Design, Testing And Performance
Computer Programming And Software
Report/Patent Number
JSC-CN-35733
DETC2016-60108
Report Number: JSC-CN-35733
Report Number: DETC2016-60108
Meeting Information
Meeting: 12th International Conference on Multibody Systems, Nonlinear Dynamics, and Control
Location: Charlotte, NC
Country: US
Start Date: August 21, 2016
End Date: August 24, 2016
Sponsors: American Society of Mechanical Engineers
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
Multibody dynamics
Simulation
Space flight
Computer software
Space vehicles
Algorithms
Contact dynamics
Manipulators
NASA
Rapid prototyping
Robotics
Space stations
Vehicles
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