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A Study on a Conceptualization-oriented SDSS Model for Landscape Design

조경설계를 위한 공간개념화 지향의 공간의사결정지원시스템 모델에 대한 연구

  • Kim, Eun Hyung (Gachon University Professor of Landscape Architecture)
  • Received : 2014.10.31
  • Accepted : 2014.12.29
  • Published : 2014.12.31

Abstract

By combining the role of current GIS technology and design behaviors from the cognitive perspective, spatial conceptualization can be extended efficiently and creatively for ill-structured problems. This study elaborates the model of a conceptualization-oriented SDSS(Spatial Decision Support System) for a landscape design problem. Current information-oriented GIS technology plays a minor role in planning and design. The three attributes in planning and design problems describe how the deficiencies of current GIS technology can be seen as a failure of the technology. These are summarized: (1) Information Explosion/Information Ignorance (2) Dilemma of Rigor and Relevance (3) Ill-structured Nature of planning and Design. In order to implement the conceptualization idea in the current GIS environment, it will be necessary to shift from traditional, information-oriented GISs to conceptualization-oriented SDSSs. The conceptualization-oriented SDSS model reflects the key elements of six important theories and techniques. The six useful theories and techniques are as follows; (1) Human Information Processing (2) Tool/Theory Interaction (3) The Sciences of the Artificial and Epistemology of Practice (4) Decision Support Systems (DSSs) (5) Human-Computer Interaction (HCI) (6) Creative Thinking. The future conceptualization-oriented SDSS can provide capabilities for planners and designers to figure out some "hidden organizations" in spatial planning and design, and develop new ideas through its conceptualization capability. The facilitation of conceptualization has been demonstrated by presenting three key ideas for the framework of the SDSS model: (1) bubble-oriented design support system (2) prototypes as an extension of semantic memory, and (3) scripts as an extension of episodic memory in a cognitive pschology perspective. The three ideas can provide a direction for the future GIS technology in planning and design.

본 논문은 조경설계를 위한 창의적 개념화를 지향하는 공간 의사 결정 시스템 모델에 대한 연구이다. (1)정보의 폭발 및 무시 (2)원칙성과 융통성의 딜레마 (3)비구조화된 성격의 계획 및 설계라는 세가지 특징 때문에, 현재 정보중심의 GIS는 큰 역할을 못하고 있다. 이에 현재의 정보중심의 GIS에 대한 대안으로 공간 개념화를 지향하는 SDSS(공간의 사결정지원시스템)모델을 제시하고자 한다. 미래의 공간 개념화 지향의 SDSS는 인지적 관점을 기반으로 한 공간개념화를 현재의 GIS기술과 연계시킴으로써 조경설계의 비구조적인 문제를 효율적이고, 창조적으로 해결할 수 있다. 공간개념화 지향의 SDSS 모델은 (1)인간정보처리 (2)도구 및 이론의 상호작용 (3)인지과학 및 실천인식론 (4)의사결정지원 시스템 (5)인간과 컴퓨터의 상호작용 (6)창조적인 사고라는 핵심이론 및 기술을 반영한다. 향후 구현될 공간 개념화 지향의 SDSS는 설계자가 공간계획 및 설계상에서 "숨겨진 조직"을 파악할 수 있게 하고, 생성 및 개념화 능력을 통해 새로운 아이디어를 개발하고 이를 다른 설계자와 공유할 수 있게 한다. 공간개념화는 (1)버블다이어그램 지향의 설계지원 시스템 (2)어의적 기억의 확장으로서의 프로토타입 (3)삽화적 기억의 확장으로서 스크립트라는 세 가지 핵심 아이디어를 통해 공간 설계의 개념화를 보다 용이하게 할 수 있다. 앞으로 이 세 가지 아이디어는 계획 및 설계를 위한 GIS기술의 미래 방향을 제시할 수 있을 것이다.

Keywords

References

  1. Ashcraft, M. H. 1989, Human Memory and Cognition, Scott, Foresman and Company.
  2. Batey, P. W. J; Breheny, M. J. 1978, Methods in Planning. Part II: a Prescriptive' Review, Town Planning Review, 49:502-517. https://doi.org/10.3828/tpr.49.4.n741481482582166
  3. Carl S. 2012, A Framework for Geodesign: Changing Geography by Design, Journal of Landscape Architecture, July 2, pp. 87.
  4. Coyne, R. D. et al. 1990, Knowledge-Based Design Systems, Addison-Wesley Publishing Company.
  5. Coyne, R. D; Yokozawa, M. 1992, Computer Assistance in Designing from Precedent, Environmental and Planning B: Planning and Design, 19:143-171. https://doi.org/10.1068/b190143
  6. Galle, P. 1991, Alexander Patterns for Design Computing: Atoms of Conceptual Structure, Environmental and Planning B: Planning and Design, 18: 327-346. https://doi.org/10.1068/b180327
  7. Hall, E. T. 1966, The Hidden Dimension, New York: Doubleday & Company.
  8. Harris, B. 1988a, The Emerging Unity of Science and Humanism in Planning, Journal of American Planning Association. Autumn, pp. 521-524.
  9. Jones, C. J. 1970, Design Method: Seeds of Human Futures, Wiley-lnterscience.
  10. Kim, E. H. 1993, From Information- oriented Geographic information Systems Toward Conceptualization-oriented Spatial Decision Support Systems in Planning and Design, Ph.D. Dissertation, University of Massachusetts.
  11. Langendorf, R. 1985, Computer and Decision Making, Journal of the American Planning Association, 51(4):422-33. https://doi.org/10.1080/01944368508976831
  12. Lindsay, P. H; Norman, D. A. 1977, Human Information Processing, Academic Press: New York, Sanfrancisco, London.
  13. Long, J. 1989, Cognitive Ergonomics and Human Computer Interaction: an Introduction, In Long, J; Whitefield, A. (Eds), Cognitive Ergonomics and Human Computer Interaction. New York: Cambridge University Express.
  14. Lynch, K; Hack, G. 1984, Site Planning, The MIT Press.
  15. MacDougall, E. B. 1975, The Accuracy of Map Overlays, Landscape Planning, 2:23-30. https://doi.org/10.1016/0304-3924(75)90004-0
  16. Miller, G. A. 1956, "The Magical Number Seven, Plus or Minus Two: Some Limits on Our Capacity for Processing Information", PSYCHOLOGICAL REVIEW, 63(2):81-97. https://doi.org/10.1037/h0043158
  17. Mannheim, K. 1949, Man and Society: in an Aoe of Reconstruction, New York: Harcourt.
  18. Rasmussen, J. 1988, Decision Support Systems-Designing to Extend the Cognitive Limits, Handbook of Human-Computer Interaction edited by Helander, M., Elsevier Science Publishers B.V., pp. 997-1030.
  19. Rich, E; Knight, K. 1991, Artificial Intelligence, Mcgraw-Hill, Inc.
  20. Schank, R. C; Abelson, R. P. 1977, Scripts, Plans. Goals and Understanding, Hillsdale, NJ: Erlbaum.
  21. Schon, D. A. 1983, The Reflective Practitioner, New York: Basic Books.
  22. Weaver, W. 1967, an Essay on Science and Complexity, Science and Imagination, Basic Books, Inc.
  23. William, R. M. 2012, Introducing Geodesign: The Concept, Esri.

Cited by

  1. 조경설계를 위한 Geodesign 방법론 vol.23, pp.6, 2014, https://doi.org/10.12672/ksis.2015.23.6.077