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Optimization of a Lunar Pallet Lander Reinforcement Structure Using a Genetic AlgorithmThis paper presents a design automation process using optimization via a genetic algorithm to design the conceptual structure of a Lunar Pallet Lander. The goal is to determine a design that will have the primary natural frequencies at or above a target value as well as minimize the total mass. Several iterations of the process are presented. First, a concept optimization is performed to determine what class of structure would produce suitable candidate designs. From this a stiffened sheet metal approach was selected leading to optimization of beam placement through generating a two-dimensional mesh and varying the physical location of reinforcing beams. Finally, the design space is reformulated as a binary problem using 1-dimensional beam elements to truncate the design space to allow faster convergence and additional mechanical failure criteria to be included in the optimization responses. Results are presented for each design space configuration. The final flight design was derived from these results.
Document ID
20140011707
Acquisition Source
Marshall Space Flight Center
Document Type
Conference Paper
Authors
Burt, Adam O.
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Hull, Patrick V.
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Date Acquired
September 15, 2014
Publication Date
June 16, 2014
Subject Category
Spacecraft Design, Testing And Performance
Structural Mechanics
Report/Patent Number
M14-3674
Report Number: M14-3674
Meeting Information
Meeting: AIAA/International Society of Structural and Multidisciplinary Optimization (ISSMO) Multidisciplinary Analysis and Optimization Conference
Location: Atlanta, GA
Country: United States
Start Date: June 16, 2014
End Date: June 20, 2014
Sponsors: American Inst. of Aeronautics and Astronautics
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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