Engineering PapersSearch

NASA NTRS · 19990087093

On Developing a Taxonomy for Multidisciplinary Design Optimization: A Decision-Based Perspective

Abstract

In this paper, we approach MDO from a Decision-Based Design (DBD) perspective and explore classification schemes for designing complex systems and processes. Specifically, we focus on decisions, which are only a small portion of the Decision Support Problem (DSP) Technique, our implementation of DBD. We map coupled nonhierarchical and hierarchical representations from the DSP Technique into the Balling-Sobieski (B-S) framework (Balling and Sobieszczanski-Sobieski, 1994), and integrate domain-independent linguistic terms to complete our taxonomy. Application of DSPs to the design of complex, multidisciplinary systems include passenger aircraft, ships, damage tolerant structural and mechanical systems, and thermal energy systems. In this paper we show that Balling-Sobieski framework is consistent with that of the Decision Support Problem Technique through the use of linguistic entities to describe the same type of formulations. We show that the underlying linguistics of the solution approaches are the same and can be coalesced into a homogeneous framework with which to base the research, application, and technology MDO upon. We introduce, in the Balling-Sobieski framework, examples of multidisciplinary design, namely, aircraft, damage tolerant structural and mechanical systems, and thermal energy systems.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Lewis, Kemper, Mistree, Farrokh. 1995-01-01. On Developing a Taxonomy for Multidisciplinary Design Optimization: A Decision-Based Perspective. https://ntrs.nasa.gov/citations/19990087093

Cite the original work for its findings. Save a collection to share your selection of sources.