The different stages in design are briefly discussed. Examples of previous research into automating the preliminary design stage are described. An architecture for a computer aided preliminary design system is proposed. A prototype system for generating design concepts for transmission devices is presented.
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References
1.
PhamD. T.YangY.Optimization of multi-modal discrete functions using genetic algorithms. Proc. Instn Mech. Engrs, Part D, 1993, 207(D1), 53–59.
2.
RabinsM. J.ArdayfioD.BalzarR.FenvesS.NadlerG.RichardsonH.RinardI.RothB.SeiregA.WoznyM.Goals and priorities for research in engineering design. Technical report, ASME, New York, July 1986.
3.
PahlG.BeitzW.Engineering design: a systematic approach, 1988 (The Design Council, Springer-Verlag, London).
4.
WallaceK.Outline of proposed research programme. Research proposal, Engineering Design Centre, Cambridge University Engineering Department, Cambridge, November 1990.
5.
FrenchM. J.Conceptual design for engineers, 2nd edition, 1985 (Springer-Verlag, London).
6.
DixonJ. R.SimmonsM. K.Computers that design: Expert systems for mechanical engineers. Computers in Mech. Engng, November 1983, 2(3), 10–18.
7.
DixonJ. R.SimmonsM. K.CohenP. R.An architecture for application of artificial intelligence to design. In Proceedings of ACM IEEE Twenty-first Conference on Design automation, Albuquerque, N.M., June 1984, pp. 634–640.
8.
BrownD. C.ChandrasekaranB.Expert systems for a class of mechanical design activity. In Working Conference on knowledge engineering in computer-aided design (Ed. GeroJ. S.), September 1985, pp. 259–290 (Elsevier Science Publishers B.V. (North-Holland), IFIP, Amsterdam and Budapest).
9.
SriramD.Knowledge-based approaches for structural design. PhD thesis, Department of Civil Engineering, Carnegie-Mellon University, Pittsburgh, Pa., February 1986.
10.
DyerM.FlowerM.HodgesJ.‘EDISON’: An engineering design invention system operating naively. Artificial Intelligence, 1986, 1, 36–44.
11.
UlrichK. T.SeeringW. P.Conceptual design as novel combination of existing device features. In Advances in design automation—Thirteenth Annual Conference, Boston, Mass., September 1987, pp. 295–300 (ASME).
12.
MaherM. L.ZhaoF.GeroJ. S.An approach to knowledge-based creative design. In Preprints of Engineering Design Research Conference, Amherst, Mass., June 1989, pp. 333–346 (National Science Foundation).
13.
WilliamsB. C.Visualizing potential interactions: constructing novel devices from first principles. In Proceedings of Eighth National Conference on Artificial intelligence (AAAI-90), Boston, Mass., July 1990.
14.
HayesP.The second naive physics manifesto. In Readings in knowledge representation (Eds BrachmanRonald J.LevesqueHector J.), 1985, pp. 467–486 (Morgan Kaufmann, Los Altos, Calif.).
15.
De KleerJ.BrownJ. S.A qualitative physics based on confluences. Artificial Intelligence, 1984, 24, 7–83.
16.
ForbusK. D.Qualitative process theory. Artificial Intelligence, 1984, 24, 85–168.
HollandJ. H.Adaptation in natural and artificial systems, 1975 (University of Michigan Press, Ann Arbor).
19.
DavisL., (Ed.) Genetic algorithms and simulated annealing, 1987 (Pitman, London).
20.
GoldbergD. E.Genetic algorithms in search, optimization and machine learning, 1988 (Addison-Wesley, Reading, Mass.).
21.
KotaS.Qualitative motion synthesis: towards automating mechanical systems configuration. Proceedings of NSF Conference on Design and manufacturing systems, Arizona State University, Tempe, 8–12 January 1990, pp. 77–91.
22.
KAPPA reference manual, version 1.0, May 1990 (IntelliCorp, Inc., USA).
23.
BoochB.Object-oriented design with applications, 1990 (Benjamin Cummings, Redwood City, Calif.).
24.
KeeneS. E.Object-oriented programming techniques. Expert Systems User, 12–15 December 1988.