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Using Approximations to Accelerate Engineering Design OptimizationOptimization problems that arise in engineering design are often characterized by several features that hinder the use of standard nonlinear optimization techniques. Foremost among these features is that the functions used to define the engineering optimization problem often are computationally intensive. Within a standard nonlinear optimization algorithm, the computational expense of evaluating the functions that define the problem would necessarily be incurred for each iteration of the optimization algorithm. Faced with such prohibitive computational costs, an attractive alternative is to make use of surrogates within an optimization context since surrogates can be chosen or constructed so that they are typically much less expensive to compute. For the purposes of this paper, we will focus on the use of algebraic approximations as surrogates for the objective. In this paper we introduce the use of so-called merit functions that explicitly recognize the desirability of improving the current approximation to the objective during the course of the optimization. We define and experiment with the use of merit functions chosen to simultaneously improve both the solution to the optimization problem (the objective) and the quality of the approximation. Our goal is to further improve the effectiveness of our general approach without sacrificing any of its rigor.
Document ID
19980232929
Acquisition Source
Langley Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Torczon, Virginia
(College of William and Mary Williamsburg, VA United States)
Trosset, Michael W.
(College of William and Mary Williamsburg, VA United States)
Date Acquired
September 6, 2013
Publication Date
August 1, 1998
Subject Category
Numerical Analysis
Report/Patent Number
NAS 1.26:208460
ICASE-98-33
NASA/CR-1998-208460
Report Number: NAS 1.26:208460
Report Number: ICASE-98-33
Report Number: NASA/CR-1998-208460
Funding Number(s)
PROJECT: RTOP 505-90-52-01
CONTRACT_GRANT: NAS1-98046
CONTRACT_GRANT: NSF CCR-97-34044
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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