Integration of the Response Surface Methodology With the Compromise Decision Support Problem in Developing a General Robust Design Procedure

Author:

Chen Wei1,Tsui Kwok-Leung1,Allen Janet K.1,Mistree Farrokh1

Affiliation:

1. Georgia Institute of Technology

Abstract

Abstract In this paper we introduce a comprehensive and rigorous robust design procedure to overcome some limitations of the current approaches. A comprehensive approach is general enough to model the two major types of robust design applications, namely, • robust design associated with the minimization of the deviation of performance caused by the deviation of noise factors (uncontrollable parameters), AND • robust design due to the minimization of the deviation of performance caused by the deviation of control factors (design variables). We achieve mathematical rigor by using, as a foundation, principles from the design of experiments and optimization. Specifically, we integrate the Response Surface Method (RSM) with the compromise Decision Support Problem (DSP). Our approach is especially useful for design problems where there are no closed-form solutions and system performance is computationally expensive to evaluate. The design of a solar powered irrigation system is used as an example. Our focus in this paper is on illustrating our approach rather than on the results per se.

Publisher

American Society of Mechanical Engineers

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Simulation-based time-dependent reliability analysis for composite hydrokinetic turbine blades;Structural and Multidisciplinary Optimization;2012-09-06

2. Technology evaluation for system of systems;Systems of Systems Engineering;2008-11-06

3. Decision-Based Conceptual Design: Modeling and Navigating Heterogeneous Design Spaces;Journal of Mechanical Design;2005-01-01

4. An investigation of multidisciplinary design subject to uncertainty;7th AIAA/USAF/NASA/ISSMO Symposium on Multidisciplinary Analysis and Optimization;1998-08-22

5. Convergence of trust region augmented Lagrangian methods using variable fidelity approximation data;Structural Optimization;1998-06

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