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Published in: Structural and Multidisciplinary Optimization 3/2011

01-09-2011 | Research Paper

Efficient multi-level design optimization using analytical target cascading and sequential quadratic programming

Authors: Paolo Guarneri, Massimiliano Gobbi, Panos Y. Papalambros

Published in: Structural and Multidisciplinary Optimization | Issue 3/2011

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Abstract

Decomposition-based optimization techniques are attractive for designing complex systems in industrial practice, such as design of structural, aerospace or automotive systems. Decomposition is attractive when a possibly intractable problem can be converted to a set of smaller, simpler problems; it also helps to understand better relationships and tradeoffs among subsystems which determine the overall behavior of the system to be optimized. A practical drawback is the increased computational cost for coordinating subproblem solutions and linking variable values to achieve overall system consistency and optimality. In this article, we exploit the problem partitioning structure to improve coordination efficiency when using analytical target cascading to solve multilevel problems. A simple modification in the coordination process allows for reduced function evaluations, as demonstrated in a structural and an automotive suspension example.

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Metadata
Title
Efficient multi-level design optimization using analytical target cascading and sequential quadratic programming
Authors
Paolo Guarneri
Massimiliano Gobbi
Panos Y. Papalambros
Publication date
01-09-2011
Publisher
Springer-Verlag
Published in
Structural and Multidisciplinary Optimization / Issue 3/2011
Print ISSN: 1615-147X
Electronic ISSN: 1615-1488
DOI
https://doi.org/10.1007/s00158-011-0630-2

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