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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Hits 1 to 20 of 627

_id 5007
authors Elezkurtaj, Tomor and Franck, Georg
year 1999
title Genetic Algorithms in Support of Creative Architectural Design
source Architectural Computing from Turing to 2000 [eCAADe Conference Proceedings / ISBN 0-9523687-5-7] Liverpool (UK) 15-17 September 1999, pp. 645-651
doi https://doi.org/10.52842/conf.ecaade.1999.645
summary The functions supported by commercial CAAD software are drawing, construction and presentation. Up to now few programs supporting the creative part of architectural problem solving have become available. The grand hopes of symbolic AI to program creative architectural design have been disappointing. In the meantime, methods called referred to as New AI have become available. Such methods includegenetic algorithms (GA). But GA, though successfully applied in other fields of engineering, still waits to be applied broadly in architectural design. A main problem lies in defining function in architecture. It is much harder to define the function of a building than that of a machine. Without specifying the function of the artifact, the fitness function of the design variants participating in the survival game of artificial evolution remains undetermined. It is impossible to fully specify the fitness function of architecture. The approach presented is one of circumventing a full specification through dividing labor between the GA software and its user. The fitness function of architectural ground plans is typically defined in terms only of the proportions of the room to be accommodated and certain topological relations between them. The rest is left to the human designer who interactively intervenes in the evolution game as displayed on the screen.
keywords Genetic Algorithms, Creative Architectural Design
series eCAADe
email
last changed 2022/06/07 07:55

_id c91a
authors Gero, J.S. and Kazakov, V.
year 1999
title Adapting evolutionary computing for exploration in creative designing
source J.S. Gero and M.L. Maher (Eds.), Computational Models of Creative Design IV, Key Centre of Design Computing and Cognition, University of Sydney, Sydney, Australia, pp. 175-186
summary This paper introduces a modification to genetic algorithms which provides computational support to creative designing by adaptively exploring design structure spaces. This modification is based on the re-interpretation of the GA's crossover as a random sampling of interpolations and its replacement with the random sampling of direct phenotype-phenotype interpolation and phenotype-phenotype extrapolation. Examples of the process are presented
keywords Creative Design, Evolutionary Computation
series other
email
last changed 2003/04/06 09:11

_id bb42
authors Gero, John S. and Kazakov, Vladimir
year 1999
title An Interpolation/Extrapolation Process For Creative Designing
source Proceedings of the Eighth International Conference on Computer Aided Architectural Design Futures [ISBN 0-7923-8536-5] Atlanta, 7-8 June 1999, pp. 263-274
summary This paper introduces a new computational operation that provides support for creative designing by adaptively exploring design state spaces. This modification is based on the re-interpretation of the crossover operation of genetic algorithms as an interpolation and its generalization to extrapolation. Examples of the results of the application of the process are presented.
keywords Creative design, computational exploration, design combination
series CAAD Futures
email
last changed 2006/11/07 07:22

_id 0b84
authors De Silva Garza, Andrés Gómez and Maher, Mary Lou
year 1999
title Evolving Design Layout Cases to Satisfy Feng Shui Constraints
source CAADRIA '99 [Proceedings of The Fourth Conference on Computer Aided Architectural Design Research in Asia / ISBN 7-5439-1233-3] Shanghai (China) 5-7 May 1999, pp. 115-124
doi https://doi.org/10.52842/conf.caadria.1999.115
summary We present a computational process model for design that combines the functionalities of case-based reasoning (CBR) and genetic algorithms (GAÌs). CBR provides a precedent-based framework in which prior design cases are retrieved and adapted in order to meet the requirements of a new design problem. GAÌs provide a general-purpose mechanism for randomly combining and modifying potential solutions to a new problem repeatedly until an adequate solution is found. In our model we use a GA to perform the case-adaptation subtask of CBR. In this manner, a gradual improvement in the overall quality of the proposed designs is obtained as more and more adaptations of the design cases originally retrieved from memory are evolved. We describe how these ideas can be used to perform layout design of residences such that the final designs satisfy the requirements imposed by feng shui, the Chinese art of placement.
series CAADRIA
email
last changed 2022/06/07 07:55

_id 8fd5
authors Eastman, C., His, I. and Potts, C.
year 1999
title Coordination in Multi-Organization Creative Design Projects
source GVU report, College of Computing, Georgia Institute of Technology
summary We are interested in the coordination of design and planning decisions in large, multi-organizational projects and their implications for technology support. These projects are undertaken by goal-driven "virtual organizations", involving companies of different sizes, professional traditions, cultures, as well as geographic location. We have observed several months of planning and review meetings in a multi-national architectural project and have gathered volumes of design and planning documentation in the form of memoranda, faxes, project plans and design drawings. From our observations, we outline the requirements and possible features of useful coordination support.
series report
email
last changed 2003/04/23 15:50

_id 1d4e
authors Engeli, Maia and Miskiewicz-Bugajski, Malgorzata
year 1999
title A Collectively Designed Information Landscape
source AVOCAAD Second International Conference [AVOCAAD Conference Proceedings / ISBN 90-76101-02-07] Brussels (Belgium) 8-10 April 1999, pp. 47-59
summary Information Landscape is one of several courses in which we explore the potential of networked environments to support creative, collaborative design processes. 180 architecture students of the first semester are participating in this course. They work in pairs. The design of an "Information Landscape" is the goal, it is a virtual terrain that is formed by the participants over time and has landmarks that lead to specific information. The location and visual appearance of the more than 400 landmarks help to remember which information is connected to them. The design of the landscape happens in five steps and is related to the tasks in the architectural design class. The collectively designed product can reach qualities beyond the possible achievements of a single person. An environment that supports such design goals must provide for motivation, transparency and support. The common product has to include a tolerance towards fluctuations in the quality of the contributions.
series AVOCAAD
email
last changed 2005/09/09 10:48

_id 0e79
authors Oxman, Rivka
year 1999
title Visual Emergence in Creative Collaboration
source Architectural Computing from Turing to 2000 [eCAADe Conference Proceedings / ISBN 0-9523687-5-7] Liverpool (UK) 15-17 September 1999, pp. 357-363
doi https://doi.org/10.52842/conf.ecaade.1999.357
summary A conceptual framework to support creative collaboration in a Web-based design environment is proposed and discussed. We demonstrated this approach in our work on visual emergence. First, our model of visual emergence of design schema is presented. Following, a conceptual framework to support this model in CAAD environment is developed and introduced. Finally, a web-based computational environment is presented. One that may support visual emergence as part of a creative collaboration process.
keywords Web Design, Collaborative Design, Visual Design, Design Thinking, Visual Emergence
series eCAADe
email
last changed 2022/06/07 08:00

_id eb7a
authors Porada, Mikhael
year 1999
title Virtual Analogy and Architecture
source Architectural Computing from Turing to 2000 [eCAADe Conference Proceedings / ISBN 0-9523687-5-7] Liverpool (UK) 15-17 September 1999, pp. 69-73
doi https://doi.org/10.52842/conf.ecaade.1999.069
summary Our fashion of thought is dialogic in its way to use simultaneously logic- mathematics and analogical approaches (Morin, 1986). The analogy works as well at the level of the unconscious by the construction of an analogon that permits us to recognise a face between thousand of others, despite changes intervened in time; as consciously where by an effort of constructive analogy, we establish bridges between different events or domains giving to the design a new lighting that puts it on the way to a solution. For this reason visual approach acquires a great importance in the establishment of similitude in conception. Many testimonies of scientists, philosophers, artists confirm this observation about their creative work, while underlining the danger of no founded analogies. In current life, analogy brings a support of likeness to the daily conversations, and the possibility to advance in the dialogue by a chaining of analogies having for objective to strengthen the speech.
series eCAADe
email
last changed 2022/06/07 08:00

_id c9ed
authors Saito, Elena Keiko
year 1999
title Formal Alternatives Through Ludic Process Applied to Tessellation
source III Congreso Iberoamericano de Grafico Digital [SIGRADI Conference Proceedings] Montevideo (Uruguay) September 29th - October 1st 1999, pp. 101-108
summary The digital graphic systems development is evident during the alternative generation process, especially when the component objects are linked to a geometric base by modulation. In this sense, the tiling modular characteristics are used as geometric support which modulation or internal divisions contain material forms (objects in 3D) immaterial forms (spaces in 3D). That is to say that each tiling module can be projected or not in 3D. The way to do this consists of applying it not only as two-dimensional support but also as operational structure by means of operations of pure translation, in 3D. It is applied to architectural themes which systemic parts or components sectors admit repetitions of units (dwelling buildings, schools, offices, hotels, etc.) in plan floor levels and in elevation as well. When programmatic and morphological requirements are solved groups are organized conforming systems in two or three dimensions. In the alternative generation stage it is tried to avoid conditioning and restrictions developing a ludic process of "piling up tiles" simple concepts stimulating creativity for the production of innovating architectonic forms. Creative ideas can arise from the game playing with 3D forms. This paper attempts to show a manner to generate unusual architectural forms that, otherwise, within a traditional design process might not be found. Some architectural examples developed with this ludic procedure are presented.
series SIGRADI
email
last changed 2016/03/10 09:59

_id e679
authors Seichter, H., Donath, D. and Petzold, F.
year 2002
title TAP – The Architectural Playground - C++ framework for scalable distributed collaborative architectural virtual environments
source Connecting the Real and the Virtual - design e-ducation [20th eCAADe Conference Proceedings / ISBN 0-9541183-0-8] Warsaw (Poland) 18-20 September 2002, pp. 422-426
doi https://doi.org/10.52842/conf.ecaade.2002.422
summary Architecture is built information (Schmitt, 1999). Architects have the task of restructuring and translating information into buildable designs. The beginning of the design process where the briefing is transformed into an idea is a crucial phase in the design process. It is where the architect makes decisions which influence the rest of the design development process (Vries et al., 1998). It is at this stage where most information is unstructured but has to be integrated into a broad context. This is where TAP is positioned – to support the architect in finding solutions through the creation of spatially structured information sets without impairing thereby the creative development. We want to enrich the inspiration of an architect with a new kind of information design. A further aspect is workflow in a distributed process where the architect’s work becomes one aspect of a decentralised working patterns. The software supports collaborative work with models, sketches and text messages within an uniform surface. The representations of the various media are connected and combined with each other and the user is free to combine them according to his or her needs.
series eCAADe
email
last changed 2022/06/07 07:59

_id 36ad
authors Serrentino, Roberto Hugo and Borsetti, Ricardo Enrique
year 1999
title Las Teselas de Penrose como generadoras de Agrupamientos de Formas Arquitectónicas Regulares (The "Teselas de Penrose" as Generators of Groups of Regular Architectural Forms)
source III Congreso Iberoamericano de Grafico Digital [SIGRADI Conference Proceedings] Montevideo (Uruguay) September 29th - October 1st 1999, pp. 161-164
summary Considering plane tessellation as a creative trigger that contributes to modular form design, a procedure to group 2D shapes and architectural 3D forms is developed. The particular case studied in this article is about Penrose tilings, which tessellate no-periodically, admitting a covering of the plane without using a constant distance repetition pattern. Procedures and rules for geometric generation and fractalization are analyzed. A technique to generate aperiodic tilings is proposed, so they will be used as a geometric precise support for the insertion of architectural objects that follow predetermined dimensional patterns, looking for constructive standardization without restricting diversity of cases. Using digital techniques, linear and central structures of groupings are analyzed. Both typologies are exemplified in various abstraction levels.
series SIGRADI
email
last changed 2016/03/10 10:00

_id b4d2
authors Caldas, Luisa G. and Norford, Leslie K.
year 1999
title A Genetic Algorithm Tool for Design Optimization
source Media and Design Process [ACADIA ‘99 / ISBN 1-880250-08-X] Salt Lake City 29-31 October 1999, pp. 260-271
doi https://doi.org/10.52842/conf.acadia.1999.260
summary Much interest has been recently devoted to generative processes in design. Advances in computational tools for design applications, coupled with techniques from the field of artificial intelligence, have lead to new possibilities in the way computers can inform and actively interact with the design process. In this paper we use the concepts of generative and goal-oriented design to propose a computer tool that can help the designer to generate and evaluate certain aspects of a solution towards an optimized behavior of the final configuration. This work focuses mostly on those aspects related to the environmental performance of the building. Genetic Algorithms are applied as a generative and search procedure to look for optimized design solutions in terms of thermal and lighting performance in a building. The Genetic Algorithm (GA) is first used to generate possible design solutions, which are then evaluated in terms of lighting and thermal behavior using a detailed thermal analysis program (DOE2.1E). The results from the simulations are subsequently used to further guide the GA search towards finding low-energy solutions to the problem under study. Solutions can be visualized using an AutoLisp routine. The specific problem addressed in this study is the placing and sizing of windows in an office building. The same method is applicable to a wide range of design problems like the choice of construction materials, design of shading elements, or sizing of lighting and mechanical systems for buildings.
series ACADIA
email
last changed 2022/06/07 07:54

_id ga9921
id ga9921
authors Coates, P.S. and Hazarika, L.
year 1999
title The use of genetic programming for applications in the field of spatial composition
source International Conference on Generative Art
summary Architectural design teaching using computers has been a preoccupation of CECA since 1991. All design tutors provide their students with a set of models and ways to form, and we have explored a set of approaches including cellular automata, genetic programming ,agent based modelling and shape grammars as additional tools with which to explore architectural ( and architectonic) ideas.This paper discusses the use of genetic programming (G.P.) for applications in the field of spatial composition. CECA has been developing the use of Genetic Programming for some time ( see references ) and has covered the evolution of L-Systems production rules( coates 1997, 1999b), and the evolution of generative grammars of form (Coates 1998 1999a). The G.P. was used to generate three-dimensional spatial forms from a set of geometrical structures .The approach uses genetic programming with a Genetic Library (G.Lib) .G.P. provides a way to genetically breed a computer program to solve a problem.G. Lib. enables genetic programming to define potentially useful subroutines dynamically during a run .* Exploring a shape grammar consisting of simple solid primitives and transformations. * Applying a simple fitness function to the solid breeding G.P.* Exploring a shape grammar of composite surface objects. * Developing grammarsfor existing buildings, and creating hybrids. * Exploring the shape grammar of abuilding within a G.P.We will report on new work using a range of different morphologies ( boolean operations, surface operations and grammars of style ) and describe the use of objective functions ( natural selection) and the "eyeball test" ( artificial selection) as ways of controlling and exploring the design spaces thus defined.
series other
more http://www.generativeart.com/
last changed 2003/08/07 17:25

_id 1b4d
authors Ding, Lan
year 1999
title An Evolutionary Model for Style Representation Emergence in Design
source University of Sydney, Key Centre of Design Computing and Cognition
summary This thesis is concerned with the development of an evolutionary process model for style representation emergence in design. It explores issues involved in the interpretation of style, the concept and process of style representation emergence, an evolutionary approach based on genetic engineering, and its computational implementation. Style is a complex phenomenon in design. Interpreting and formulating design style is a difficult task. This thesis proposes a language model which interprets style space utilising hierarchical levels that map onto syntax and semantics. The style space is then formulated using a genetic description. Current studies have discussed shape semantics emergence in design, but none has been proposed for the emergence of style representation. This thesis provides the concept of style representation emergence with the emphasis on the interpretative aspect of style as well as the emergence process. It explores the emergence process of style representation through an evolutionary approach. Simulation of biological evolution appears to be very useful for design problems. This thesis develops style representation emergence through evolutionary simulation based on genetic engineering. A hierarchical evolutionary process encompassing competition as well as discovery and an evolutionary combination is proposed and developed. A computational representation of style can then be derived by the computer system through the use of this evolutionary process. This model of style representation emergence is applied to traditional Chinese architecture. An evolutionary system is implemented and presented with some examples of traditional Chinese architectural facades. The results from the implementation of the system are analysed and the utility of this model is investigated. The implementation is developed in a Unix environment using the C language. The AutoCAD package is used for the graphic representation.

series thesis:PhD
email
last changed 2003/05/15 07:25

_id ga9916
id ga9916
authors Elzenga, R. Neal and Pontecorvo, Michael S.
year 1999
title Arties: Meta-Design as Evolving Colonies of Artistic Agents
source International Conference on Generative Art
summary Meta-design, the act of designing a system or species of design instead of a design instance, is an important concept in modern design practice and in the generative design paradigm. For meta-design to be a useful tool, the designer must have more formal support for both design species definition/expression and the abstract attributes which the designer is attempting to embody within a design. Arties is an exploration of one possible avenue for supporting meta-design. Arties is an artistic system emphasizing the co-evolution of colonies of Artificial Life design or artistic agents (called arties) and the environment they inhabit. Generative design systems have concentrated on biological genetics metaphors where a population of design instances are evolved directly from a set of ‘parent’ designs in a succession of generations. In Arties, the a-life agent which is evolved, produces the design instance as a byproduct of interacting with its environment. Arties utilize an attraction potential curve as their primary dynamic. They sense the relative attraction of entities in their environment, using multiple sensory channels. Arties then associate an attractiveness score to each entity. This attractiveness score is combined with a 'taste' function built into the artie that is sensitized to that observation channel, entity, and distance by a transfer function. Arties use this attraction to guide decisions and behaviors. A community of arties, with independent evolving attraction criteria can pass collective judgement on each point in an art space. As the Artie moves within this space it modifies the environment in reaction to what it senses. Arties support for Meta-design is in (A) the process of evolving arties, breeding their attraction potential curve parameters using a genetic algorithm and (B) their use of sensory channels to support abstract attributes geometries. Adjustment of these parameters tunes the attraction of the artie along various sensing channels. The multi-agent co-evolution of Arties is one approach to creating a system for supporting meta-design. Arties is part of an on-going exploration of how to support meta-design in computer augmented design systems. Our future work with Arties-like systems will be concerned with applications in areas such as modeling adaptive directives in Architecture, Object Structure Design, spatio-temporal behaviors design (for games and simulations), virtual ambient spaces, and representation and computation of abstract design attributes.
series other
more http://www.generativeart.com/
last changed 2003/08/07 17:25

_id ga0010
id ga0010
authors Moroni, A., Zuben, F. Von and Manzolli, J.
year 2000
title ArTbitrariness in Music
source International Conference on Generative Art
summary Evolution is now considered not only powerful enough to bring about the biological entities as complex as humans and conciousness, but also useful in simulation to create algorithms and structures of higher levels of complexity than could easily be built by design. In the context of artistic domains, the process of human-machine interaction is analyzed as a good framework to explore creativity and to produce results that could not be obtained without this interaction. When evolutionary computation and other computational intelligence methodologies are involved, every attempt to improve aesthetic judgement we denote as ArTbitrariness, and is interpreted as an interactive iterative optimization process. ArTbitrariness is also suggested as an effective way to produce art through an efficient manipulation of information and a proper use of computational creativity to increase the complexity of the results without neglecting the aesthetic aspects [Moroni et al., 2000]. Our emphasis will be in an approach to interactive music composition. The problem of computer generation of musical material has received extensive attention and a subclass of the field of algorithmic composition includes those applications which use the computer as something in between an instrument, in which a user "plays" through the application's interface, and a compositional aid, which a user experiments with in order to generate stimulating and varying musical material. This approach was adopted in Vox Populi, a hybrid made up of an instrument and a compositional environment. Differently from other systems found in genetic algorithms or evolutionary computation, in which people have to listen to and judge the musical items, Vox Populi uses the computer and the mouse as real-time music controllers, acting as a new interactive computer-based musical instrument. The interface is designed to be flexible for the user to modify the music being generated. It explores evolutionary computation in the context of algorithmic composition and provides a graphical interface that allows to modify the tonal center and the voice range, changing the evolution of the music by using the mouse[Moroni et al., 1999]. A piece of music consists of several sets of musical material manipulated and exposed to the listener, for example pitches, harmonies, rhythms, timbres, etc. They are composed of a finite number of elements and basically, the aim of a composer is to organize those elements in an esthetic way. Modeling a piece as a dynamic system implies a view in which the composer draws trajectories or orbits using the elements of each set [Manzolli, 1991]. Nonlinear iterative mappings are associated with interface controls. In the next page two examples of nonlinear iterative mappings with their resulting musical pieces are shown.The mappings may give rise to attractors, defined as geometric figures that represent the set of stationary states of a non-linear dynamic system, or simply trajectories to which the system is attracted. The relevance of this approach goes beyond music applications per se. Computer music systems that are built on the basis of a solid theory can be coherently embedded into multimedia environments. The richness and specialty of the music domain are likely to initiate new thinking and ideas, which will have an impact on areas such as knowledge representation and planning, and on the design of visual formalisms and human-computer interfaces in general. Above and bellow, Vox Populi interface is depicted, showing two nonlinear iterative mappings with their resulting musical pieces. References [Manzolli, 1991] J. Manzolli. Harmonic Strange Attractors, CEM BULLETIN, Vol. 2, No. 2, 4 -- 7, 1991. [Moroni et al., 1999] Moroni, J. Manzolli, F. Von Zuben, R. Gudwin. Evolutionary Computation applied to Algorithmic Composition, Proceedings of CEC99 - IEEE International Conference on Evolutionary Computation, Washington D. C., p. 807 -- 811,1999. [Moroni et al., 2000] Moroni, A., Von Zuben, F. and Manzolli, J. ArTbitration, Las Vegas, USA: Proceedings of the 2000 Genetic and Evolutionary Computation Conference Workshop Program – GECCO, 143 -- 145, 2000.
series other
email
more http://www.generativeart.com/
last changed 2003/08/07 17:25

_id b8c3
authors Rosenman, M.A. and Gero, J.S.
year 1999
title Evolving designs by generating useful complex gene structures
source P. Bentley (Ed.), Evolutionary Design by Computers, Morgan Kaufmann, San Francisco, pp. 345-364
summary This chapter presents two examples of work for evolving designs by generating useful complex gene structures. where the first example uses a genetic engineering approach whereas the other uses a growth model of form. Both examples have as their motivation to overcome the combinatorial effect of large design spaces by focussing the search in useful areas. This focussing is achieved by starting with design spaces defined by low-level basic genes and creating design spaces defined by increasingly more complex gene structures. In both cases the low-level basic genes represent simple design actions which when executed produce parts of design solutions. Both works are exemplified in the domain of architectural floor plans.
keywords Evolutionary Systems, Genetic Engineering
series other
email
last changed 2003/04/06 09:22

_id 0f1e
authors Barrionuevo, Luis F.
year 1999
title Posicionamiento de Volúmenes Arquitectónicos Mediante Algoritmos Evolucionistas (Positioning of Architectural Volumes by Means of Evolutionist Algorithms)
source III Congreso Iberoamericano de Grafico Digital [SIGRADI Conference Proceedings] Montevideo (Uruguay) September 29th - October 1st 1999, pp. 176-181
summary Configurational studies involve the groups of elements fulfilling restrictions defined by the designer in Architectural design. According to its necessities and intentions, the planner distributes the components of the group in a certain tridimensional way, establishing a composition. This operative procedure implies a classification system according to typologies that respond to a bigger system, and this in turn to another, until the whole is obtained. From the beginning the pattern should satisfy form restrictions, as well as dimensional and positional restrictions for each part that conforms the whole. Functional requirements are attended for each object satisfying relationships of connectivity and adjacency among them. In this work the parts are restricted by their relative position to a central element. Evolutionary Algorithms (EA) are used to solve this type of problem. Using evolutionary metaphors they originate concepts such as "genes", "chromosomes", "mutation", "crosses” and " population " (among other), which come closer to one of the solutions looked for by the designer, under combinatory stochastic methods. The most appropriate use of EA corresponds to problems of complexity NP-completeness (for example, problems of generation of cases of composition), allowing an efficient although not exhaustive analysis. Applying this technique to the generation of architectural volumes, some obtained results are exemplified.
series SIGRADI
email
last changed 2016/03/10 09:47

_id acac
authors Chan, Chiu-Shui, and Browning, Todd R.
year 1999
title Design Simulation
source CAADRIA '99 [Proceedings of The Fourth Conference on Computer Aided Architectural Design Research in Asia / ISBN 7-5439-1233-3] Shanghai (China) 5-7 May 1999, pp. 243-252
doi https://doi.org/10.52842/conf.caadria.1999.243
summary This paper intends to explore methods of constructing a design simulator. Two methodologies, approached differently, imitate the human design processes. The first component is an algorithmic method which has a cognitive model embedded. This cognitive model hypothesizes that human design has certain design logic applied. The design rationales are based on knowledge stored in a designer_ memory. Each time a similar design task is encountered, the same design procedures will be repeated for completion. What makes the results different are the design information used and sequences of processing it. A kitchen design using procedural algorithms is developed to simulate this design aspect. The second component simulates an intuitive design approach. Intuition is defined as design by rules of thumb, or heuristic design. This study investigated how to simulate an intuitive design process. The method involves building up a set of inductive rules symbolizing cultural aspects that need to be addressed in a design. A residential foyer design is the simulation task. The driving force is the heuristics. Results in this study have shown that there are many variables to include but impossible to capture and simulate any of the design processes, which are the reasons why studies in this area are difficult.
series CAADRIA
email
more http://www.public.iastate.edu/~cschan
last changed 2022/06/07 07:56

_id 4fa1
authors Lee, E., Ida, Y., Woo, S. and Sasada, T.
year 1999
title Environmental Design Using Fractals in Computer Graphics
source Architectural Computing from Turing to 2000 [eCAADe Conference Proceedings / ISBN 0-9523687-5-7] Liverpool (UK) 15-17 September 1999, pp. 533-538
doi https://doi.org/10.52842/conf.ecaade.1999.533
summary Computer graphics have developed efficient techniques for visualisation of the real world. Many of the algorithms have a physical basis, such as computational models for the light and the shadow, models of real objects (buildings, mountains, roads and so on) and the simulation of natural phenomenon. Now computer graphics techniques provide the virtual world with a perception of three dimensions. The concept of the virtual world and its technology have been expanding and intensifying in recent years. Almost everything in the real world has been simulated in virtual world. When it comes to a terrain model, what we need is labour and time. But now it is possible to simulate terrain like the real world using fractals in computer graphics with a very small program and small data set. This study aims to show how to build a real world impression in the virtual world. In this paper the authors suggest a landscape design method and show the results of its application.
keywords Fractals, Polygon-Reduction, Computer Graphics, Virtual World, Collaboration
series eCAADe
last changed 2022/06/07 07:51

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