CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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_id 7ed5
authors Corne, D., Smithers, T. and Ross, P.
year 1994
title Solving design problems by computational exploration
source J. S. Gero and E. Tyugu (eds), Formal Design Methods for CAD, NorthHolland, Amsterdam, pp. 249-270
summary Most real-world problems, especially design problems, are ill-structured, but formal approaches to problem-solving in AI have only really made progress into techniques for solving well-structured problems. Nevertheless, such research contains clues which illuminate the way towards formal approaches to solving ill-structured problems. This paper presents the foundations of an approach towards developing a better computational understanding of ill-structured problems and how to solve them computationally, with the eventual aim of giving AI problems a much greater and more useful role in the design process. The main issues which come up in this endeavour are the notions of different kinds of ill-structuredness, and the meaning of a 'solution' to an ill-structured (and hence possibly insoluble) problem. Some basic algorithmic recipes are proposed for dealing with the main kinds of ill-structuredness, and the initial design of a general computational technique which deals with general ill-structuredness is discussed.
series other
last changed 2003/04/23 15:14

_id af8b
authors Dave, B., Schmitt, G., Faltings, B. and Smith, I.
year 1994
title Case-based design in Architecture
source J.S. Gero and F. Sudweeks (eds.), the proceedings of Artificial Intelligence in Design '94, pp.145-162
summary Computational support in the domain of building design is hampered by the need to control generation and search processes both of which are elusive due to the lack of strong domain theories. Case based reasoning paradigm may be useful to overcome some of these difficulties. A case based design system is presented here that enables case adaptation and case combination of design cases to generate new design solutions more efficiently. Some issues in our approach that are different from other projects with similar aims are also discussed.
series other
email
last changed 2003/04/23 15:50

_id diss_kuo
id diss_kuo
authors Kuo, C.J.
year 1999
title Unsupervised Dynamic Concurrent Computer-Aided Design Assistant
source Los Angeles: UCLA
summary The increasing capability of computer-aided architectural design systems has strengthened the role that the computer plays in the workplace. Due to the complexity of developing new techniques and research, these systems are undertaken mostly by scientists and engineers without significant architectural input (Willey, 1991). The design concept of these systems may be based on a well-defined and well-understood process, which is not yet realized in architectural design (Galle, 1994). The output of such research may not be easily adapted into the design process. Most of the techniques assume a complete understanding of the design space (Gero and Maher, 1987) (Willey, 1991). The description or construction of the design space is always time and space consuming, and the result can never be complete due to the ever-changing nature of architectural design. This research intends to initiate a solution for the above problems. The proposed system is an unsupervised-dynamic-concurrent-computer-aided-design assistant. The “unsupervised” means the learning process is not supervised by the user because it is against the designer's nature to “think-aloud” in the design studio and it also increases the work load. It is dynamic because the size of the knowledge base is constantly changing. Concurrent means that there are multiple procedures active simultaneously. This research focuses on learning the operational knowledge from an individual designer and reapplying it in future designs. A computer system for this experiment is constructed. It is capable of The preliminary result shows a positive feedback from test subjects. The purpose of this research is to suggest a potent computational frame within which future developments may flourish.
series thesis:PhD
last changed 2003/11/28 07:37

_id 22f0
authors Takeda, H. and Nishida, T.
year 1994
title Integration of aspects in design Processes
source Gero J.S. and Sudweeks F. (eds) - Artificial Intelligence in Design 94, Kluwer Academic Publishers
summary In this paper, we discuss dynamic integration of multiple aspects, i.e., integration accomplished according to progress of design. It is not prepared in advance, but created in design processes. Firstly, we introduce our model of design processes that is based on a logical framework. Secondly, we define aspects in the logical framework. An aspect is represented as a tuple of theory and vocabulary in the logical framework. In particular knowledge in analytical aspects is represented as virtual logical theory. Thirdly, we propose integration of aspects by abduction that is another approach than integration of models. Abduction defined with multiple aspects integrates aspects by superposition of hypothesis which is identification of instantiated entities in hypothesis. It also examines connectivity of hypotheses by explanatory coherence. Since superposition of hypotheses and theories used in abduction tell us how aspects are integrated in design, they can contribute to re-organize aspec...
series other
last changed 2003/04/23 15:14

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