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Structural design systems using knowledge-based techniques. Applications to damage tolerance design of aircraft structures

Abstract

Engineering information management and the corresponding information systems are of a strategic importance for industrial enterprises. This thesis treats the interdisciplinary field of designing computing systems for structural design and analysis using knowledge-based techniques. Specific conceptual models have been designed for representing the structure and the process of objects and activities in a structural design and analysis domain. In this thesis, it is shown how domain knowledge can be structured along several classification principles in order to reduce complexity and increase flexibility. By increasing the conceptual level of the problem description and representation of the domain knowledge in a declarative form, it is possible to enhance the development, maintenance and use of software for mechanical engineering. This will result in a corresponding increase of the efficiency of the mechanical engineering design process. These ideas together with the rule-based control point out the leverage of declarative knowledge representation within this domain. Used appropriately, a declarative knowledge representation preserves information better, is more problem-oriented and change-tolerant than procedural representations. 74 refs.
Authors:
Publication Date:
Sep 01, 1993
Product Type:
Technical Report
Report Number:
LIU-TEK-LIC-1993-42
Reference Number:
SCA: 990200; PA: AIX-25:029356; EDB-94:061127; NTS-94:018362; SN: 94001178505
Resource Relation:
Other Information: PBD: Sep 1993; Related Information: Linkoeping Studies in Science and Technology, 400; Thesis
Subject:
99 GENERAL AND MISCELLANEOUS//MATHEMATICS, COMPUTING, AND INFORMATION SCIENCE; EXPERT SYSTEMS; AIRCRAFT; ARTIFICIAL INTELLIGENCE; INFORMATION SYSTEMS; KNOWLEDGE BASE; TOLERANCE; 990200; MATHEMATICS AND COMPUTERS
OSTI ID:
10138864
Research Organizations:
Linkoeping Univ. (Sweden). Dept. of Mechanical Engineering
Country of Origin:
Sweden
Language:
English
Other Identifying Numbers:
Journal ID: ISSN 0280-7971; Other: ON: DE94621510; ISBN 91-7871-174-6; TRN: SE9400043029356
Availability:
OSTI; NTIS; INIS
Submitting Site:
SWDN
Size:
129 p.
Announcement Date:
Jul 05, 2005

Citation Formats

Orsborn, K. Structural design systems using knowledge-based techniques. Applications to damage tolerance design of aircraft structures. Sweden: N. p., 1993. Web.
Orsborn, K. Structural design systems using knowledge-based techniques. Applications to damage tolerance design of aircraft structures. Sweden.
Orsborn, K. 1993. "Structural design systems using knowledge-based techniques. Applications to damage tolerance design of aircraft structures." Sweden.
@misc{etde_10138864,
title = {Structural design systems using knowledge-based techniques. Applications to damage tolerance design of aircraft structures}
author = {Orsborn, K}
abstractNote = {Engineering information management and the corresponding information systems are of a strategic importance for industrial enterprises. This thesis treats the interdisciplinary field of designing computing systems for structural design and analysis using knowledge-based techniques. Specific conceptual models have been designed for representing the structure and the process of objects and activities in a structural design and analysis domain. In this thesis, it is shown how domain knowledge can be structured along several classification principles in order to reduce complexity and increase flexibility. By increasing the conceptual level of the problem description and representation of the domain knowledge in a declarative form, it is possible to enhance the development, maintenance and use of software for mechanical engineering. This will result in a corresponding increase of the efficiency of the mechanical engineering design process. These ideas together with the rule-based control point out the leverage of declarative knowledge representation within this domain. Used appropriately, a declarative knowledge representation preserves information better, is more problem-oriented and change-tolerant than procedural representations. 74 refs.}
place = {Sweden}
year = {1993}
month = {Sep}
}