A Learning Shell for Iterative Design (L’SID): Concepts and Applications

Author:

Jamalabad V. R.1,Langrana N. A.1

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Rutgers—The State University of New Jersey, New Brunswick, New Jersey

Abstract

A software shell called “Learning Shell for Iterative Design,” L’SID, has been developed in conjunction with a simple data matrix, the “learn table.” Histories of design are utilized in aiding the acceleration of routine design problems. The class of problems addressed are non-convex, noninvertible and with multiple performance criteria. The design parameters can be of any definable type; continuous, integer or nonordered feature based. L’SID is domain independent and highly modular. The ability of L’SID to aid deterministic methods is shown statistically with two example problems (extrusion die and airfoil). Results also show the ability of the technique to surmount nonconvexity in design space and computational noise related to roundoff.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference28 articles.

1. Aly, S., Marconi, F., Ogot, M. O., Pelz, R. B., and Siclari, M., “Stochastic Optimization Applied to CFD Shape Design,” 36th Structures, Dynamics and Materials Conference, AIAA, 1995, to appear.

2. ASME , “Engineous Explores the Design Space,” Mechanical Engineering, Vol. 114, No. 2, p. 4949, Feb 1992.

3. Baya, V., Langrana, N. A., and Jaluria, Y., “Design of a Die in an Extrusion Manufacturing Process,” Computers In Engineering Conference and Exposition, Anaheim, CA, 1989, ASME.

4. Brown, D. C., and Chandrasekaran, B., “An Approach to Expert Systems for Mechanical Design,” Trends and Applications, National Bureau of Standards, Gaithersburg, MD, 1983. IEEE Computer Society.

5. DARPA, Case Based Reasoning Workshop, Morgan Kaufmann, 1988.

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