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Tytuł artykułu

An Outline of a Method of Evaluating the Design Solutions

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents an easy to use method to evaluate early design solutions created by a designer and/or generated by a machine. The method is based on the internal representation of design drawings in the form of hierarchical hypergraphs and on the project specification in the form of a list composed of two types of clauses: the elementary ones and the repeatable ones. These clauses represent goals and limitations imposed on the design by the customer. The evaluation value depends on the soft and hard elements of the specification, which are compared with appropriate accurate values of hypergraph attributes.
Rocznik
Strony
37--45
Opis fizyczny
Bibliogr. 14 poz., il., wykr.
Twórcy
autor
  • Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University
Bibliografia
  • 1. Bittermann M. Acomputational design system with cognitive features based on multi-objective evolutionary search with fuzzy information processing. In: J.S. Gero, ed., Design Computing and Cognition'10, 505-524. Kluwer Academic Publishers, 2010.
  • 2. Grabska E., Borkowski A., Palacz W., Gajek S. Hypergraph System Supporting Design and Reasoning, Wolfgang Huhnt (ed.), Computing in Engineering EG-ICE Conference 2009, Shaker Verlag, pp. 134-41, 2009.
  • 3. Grabska E., Grzesiak-Kopeć K., Lembas J., Łachwa A., Ślusarczyk G. Hypergraphs in diagrammatic design. In: K. Wojciechowski et al., eds., Computational Imaging and Vision, vol. 32, pp.111-117. Springer, 2006.
  • 4. Grabska E., Łachwa A., Ślusarczyk G. New visual languages supporting design of multi-storey Buildings. Advanced Engineering Informatics, 2012, 26, pp. 681-690.
  • 5. Grabska E., Łachwa A., Ślusarczyk G. Approximate Reasoning and Fuzzy Evaluation in Code Compliance Checking. In: A. Gruca et al., eds., Man-Machine Interactions 4, Advances in Intelligent Systems and Computing 391, Springer, 2016.
  • 6. Grabska E., Ślusarczyk G. Knowledge and reasoning in design systems. Automation in Construction, 2011, 22, pp. 927- 934.
  • 7. Łachwa A. Fuzzy world of sets, numbers, relations, facto, roles and decisions. AOW EXIT, Warszawa 2001 (in Polish).
  • 8. Łachwa A., Grabska E., Ślusarczyk G. Fuzzy interpretation of layout hypergraphs. Schedae Informaticae, 2006, 15, pp.165-173.
  • 9. Macit S., İlal M.E., Günaydın H.M., Suter G. İzmir municipality housing and zoning code analysis and representation for compliance checking. In: G. Suter et al., eds., 20th Workshop of the European Group for Intelligent Computing in Engineering. Vienna University of Technology, 2013.
  • 10. Palacz W., Grabska E., Gajek S. Conceptual Designing Supported by Automated Checking of Design Requirements and Constraints. D. D. Frey et al. (eds.), Improving Complex Systems Today, Advanced Concurrent Engineering, Springer-Verlag, 2011, pp. 257-265.
  • 11. Saaty T.L.A scaling method for priorities in hierarchical structures. Journal of Mathematical Psychology, 1977, 15, pp. 234-281.
  • 12. Ślusarczyk G. Hierarchical hypergraph transformations in engineering design. Journal Application Computer Science. 2002, 11, pp. 67-82.
  • 13. Zadeh, L.A. Fuzzy sets. Information and Control, 1965, 8: 338–353.
  • 14. Zadeh, L.A. The concept of a linguistic variable and its application to approximate reasoning. Information Sciences, 1975, 8, pp. 199–249, 301-357.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d087339c-420c-4a4b-8cdd-81f49b23f4d8
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