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 356

_id 0ecc
authors Anh, Tran Hoai
year 1994
title APPLICATION OF FULL-SCALE MODELLING IN VIETNAM: AN OUTLINE FOR DISCUSSION
source Beyond Tools for Architecture [Proceedings of the 5th European Full-scale Modeling Association Conference / ISBN 90-6754-375-6] Wageningen (The Netherlands) 6-9 September 1994, pp. 59-70
summary This paper discusses the possibility of applying full-scale modelling in Vietnam, a non-western so called developing country. It deals with two main questions: 1) Is the application of full-scale modelling to be restricted to the West only? 2) what are the possibilities, constraints and fields of application - with attention to the methodological validity and technical solution for full-scale modelling in Vietnam? It is argued that since full-scale modelling is based on people-environment interaction, it should, in principle, apply to studies about people–environment relation anywhere on earth. On the methodological validity, it is discussed that application of full-scale modelling in Vietnam faces similar methodological problems as encountered in European applications (such as people's behaviour in experiment, ability to understand the abstraction of models, etc.) although at another level as this paper will make clear. However, it would be needed to design a modelling kit that is of low costs and adapted to the availability of local materials and suitable for the climatic condition of Vietnam. Two fields of application are projected as most applicable in Vietnam: modelling in architectural education and research investigation. Application for user's participation in the design process will depend on the development of building policy in the country.
keywords Model Simulation, Real Environments
series other
type normal paper
last changed 2004/05/04 11:00

_id ddss9419
id ddss9419
authors Choukry, Maha
year 1994
title Knowledge Acquisition by Measurement: The Domain of Building Change
source Second Design and Decision Support Systems in Architecture & Urban Planning (Vaals, the Netherlands), August 15-19, 1994
summary This paper presents a study that is aimed at finding a basis for systematic knowledge acquisition. More specifically, it attempts to introduce, knowledge acquisition by measurement: a method thatallows objective evaluation of empirical observations. Measurement has proven to be a significant tool to acquire, evaluate, and upgrade knowledge in some knowledge domains. In other domains,such as the domain of building change, measurement is barely subject of study. Building change knowledge acquisition by measurement seems to become a significant subject of study for several reasons: (i) increase our objective knowledge of previous building changes, (ii) allow systematic monitoring of present changes, and (iii) assist decisions planning for change in new buildings. In current studies, questions such as what were required changes, what were the building elements that fulfilled a change, how often did a building change, and what were the costs related to a change, often get no systematic or objective answers. Hence, to overcome that, I am concerned with finding a method that is to answer the following questions: 1) What is the domain of building change; 2) Is a method of knowledge acquisition by measurement adequate to represent buildingchanges; 3) Can empirical observations of building change be systematically represented and objectively evaluated using this method; and 4) How can this method be applied to assist theunderstanding of previous changes, the control of present changes, and assist planning for building change. The method introduced is based on three modules: (i) domain of building change; (ii) modelling this domain; and (iii) measurement. These three modules enable the formulation of the measurement of building change, namely the change indicator. Multiple change indicators, such as cost change indicator, or occurrence change indicator can measure empirical observations ofbuilding change. Sequential steps that lead to the development of this method start by section 1, where the domain of building change is specified. In section 2 this domain is modelled, and in section 3, knowledge acquisition by measurement method is introduced. A case study, shows how empirical building changes can be measured is explained in section 4. In section 5, three possible applications are introduced, and in section 6, I explain how a computerized prototype would enhance the efficiency of using such applications. Findings and conclusions resulting from this study are summarized in section 7.
series DDSS
email
last changed 2003/08/07 16:36

_id 6572
authors Fioravanti, A., Le Rose, L. and Sgueglia della Marra, C.
year 1994
title KAAD: A Didactical Experience
doi https://doi.org/10.52842/conf.ecaade.1994.x.w3w
source The Virtual Studio [Proceedings of the 12th European Conference on Education in Computer Aided Architectural Design / ISBN 0-9523687-0-6] Glasgow (Scotland) 7-10 September 1994, pp. 257
summary Students in the last year of their course in Building Engineering in the "La Sapienza" University of Rome study questions of architectural design of considerable complexity, since they are characterised by a marked degree of multi-disciplinary work. In the preceding years, the students acquire specialist notions in the fields of thermal behaviour of buildings, technological equipment, static security, architectural composition, programming and costs, technical and constructional details, and so on. However, there is a need for integration at design level of the disciplines learned. At the CAAD Laboratory of the Department of Technical Architecture and Town-planning Technique, with the contribution of the National Research Council, a software known as KAAD (Knowledge-based Assistant for Architectural Design) has been devised, with the aim of providing an effective aid to the activity of design.
series eCAADe
last changed 2022/06/07 07:50

_id 130d
authors Hoinkes, R. and Mitchell, R.
year 1994
title Playing with Time - Continuous Temporal Mapping Strategies for Interactive Environments
source 6th Canadian GIS Conference, (Ottawa Natura Resources Canada), pp. 318-329
summary The growing acceptance of GIS technology has had far- reaching effects on many fields of research. The recent developments in the area of dynamic and temporal GIS open new possibilities within the realm of historical research where temporal relationship analysis is as important as spatial relationship analysis. While topological structures have had wide use in spatial GIS and have been the subject of most temporal GIS endeavours, the different demands of many of these temporally- oriented analytic processes questions the choice of the topological direction. In the fall of 1992 the Montreal Research Group (MRG) of the Canadian Centre for Architecture mounted an exhibition dealing with the development of the built environment in 18th- century Montreal. To aid in presenting the interpretive messages of their data, the MRG worked with the Centre for Landscape Research (CLR) to incorporate the interactive capabilities of the CLR's PolyTRIM research software with the MRG's data base to produce a research tool as well as a public- access interactive display. The interactive capabilities stemming from a real- time object- oriented structure provided an excellent environment for both researchers and the public to investigate the nature of temporal changes in such aspects as landuse, ethnicity, and fortifications of the 18th century city. This paper describes the need for interactive real- time GIS in such temporal analysis projects and the underlying need for object- oriented vs. topologically structured data access strategies to support them.
series other
last changed 2003/04/23 15:14

_id caadria2004_k-1
id caadria2004_k-1
authors Kalay, Yehuda E.
year 2004
title CONTEXTUALIZATION AND EMBODIMENT IN CYBERSPACE
doi https://doi.org/10.52842/conf.caadria.2004.005
source CAADRIA 2004 [Proceedings of the 9th International Conference on Computer Aided Architectural Design Research in Asia / ISBN 89-7141-648-3] Seoul Korea 28-30 April 2004, pp. 5-14
summary The introduction of VRML (Virtual Reality Markup Language) in 1994, and other similar web-enabled dynamic modeling software (such as SGI’s Open Inventor and WebSpace), have created a rush to develop on-line 3D virtual environments, with purposes ranging from art, to entertainment, to shopping, to culture and education. Some developers took their cues from the science fiction literature of Gibson (1984), Stephenson (1992), and others. Many were web-extensions to single-player video games. But most were created as a direct extension to our new-found ability to digitally model 3D spaces and to endow them with interactive control and pseudo-inhabitation. Surprisingly, this technologically-driven stampede paid little attention to the core principles of place-making and presence, derived from architecture and cognitive science, respectively: two principles that could and should inform the essence of the virtual place experience and help steer its development. Why are the principles of place-making and presence important for the development of virtual environments? Why not simply be content with our ability to create realistically-looking 3D worlds that we can visit remotely? What could we possibly learn about making these worlds better, had we understood the essence of place and presence? To answer these questions we cannot look at place-making (both physical and virtual) from a 3D space-making point of view alone, because places are not an end unto themselves. Rather, places must be considered a locus of contextualization and embodiment that ground human activities and give them meaning. In doing so, places acquire a meaning of their own, which facilitates, improves, and enriches many aspects of our lives. They provide us with a means to interpret the activities of others and to direct our own actions. Such meaning is comprised of the social and cultural conceptions and behaviors imprinted on the environment by the presence and activities of its inhabitants, who in turn, ‘read’ by them through their own corporeal embodiment of the same environment. This transactional relationship between the physical aspects of an environment, its social/cultural context, and our own embodiment of it, combine to create what is known as a sense of place: the psychological, physical, social, and cultural framework that helps us interpret the world around us, and directs our own behavior in it. In turn, it is our own (as well as others’) presence in that environment that gives it meaning, and shapes its social/cultural character. By understanding the essence of place-ness in general, and in cyberspace in particular, we can create virtual places that can better support Internet-based activities, and make them equal to, in some cases even better than their physical counterparts. One of the activities that stands to benefit most from understanding the concept of cyber-places is learning—an interpersonal activity that requires the co-presence of others (a teacher and/or fellow learners), who can point out the difference between what matters and what does not, and produce an emotional involvement that helps students learn. Thus, while many administrators and educators rush to develop webbased remote learning sites, to leverage the economic advantages of one-tomany learning modalities, these sites deprive learners of the contextualization and embodiment inherent in brick-and-mortar learning institutions, and which are needed to support the activity of learning. Can these qualities be achieved in virtual learning environments? If so, how? These are some of the questions this talk will try to answer by presenting a virtual place-making methodology and its experimental implementation, intended to create a sense of place through contextualization and embodiment in virtual learning environments.
series CAADRIA
type normal paper
last changed 2022/06/07 07:52

_id ddss9453
id ddss9453
authors Krafta, Romulo
year 1994
title Urban Configuration, Attraction And Morphology
source Second Design and Decision Support Systems in Architecture & Urban Planning (Vaals, the Netherlands), August 15-19, 1994
summary Spatial Interaction (SI), based on the principle of attraction, has set up a powerful way of looking at the behaviour of urban systems. Within-place activities generate and/or attract trips, due to their inner fragmentary nature; several activities articulate a system of locations and flows which is supposed to be regulated by concentration of those activities and distance between them'. SI has been criticized for having a poor theory and little regard to spatial specifics. In general terms, planners and large-scale urban scientists have been more comfortable with it than designers and urban morphologists, whose questions about space configuration are awkwardly dealt with in such a framework. Recently, Space Syntax (SS) has been suggested as an alternative to describe possible roles of space in the urban system. Its theory looks very complex - a deep cultural, anthropological connection between man and space, an atavistic impulse driving the shaping of space. Teklenburg et al have shown, however, that it is, in fact, very simple and not far from the rude assumptions of SI: a matter of distance and orientation3. Hence, what does look new is just its way of describing orientation, through the axiallity of public space. Axial lines retain the fundamental issue of connectivity; so they describe space more efficiently than the traditional zones or links used in SI models. SI says little about configuration, SS says little about interaction between spaces and activities, and both say nothing about morphology, or the configurational development of urban systems. An alternative approach is suggested: (i) urban spatial configurati-on (urban grid and built form) strongly conditions activity location and flows, in the short term. In this way, a convenient description of such a configuration should denounce its potential to housing activities and generate flows. This required description should take the grid axiallity as a measure of connectivity and orientation, as in SS, as well as the built form as a measure of attraction, as in SI; (ii) activity location and flows strongly conditions urban spatial configuration change, in the long run. Location and flow patterns create values that are expressed by an increasing conflict between rising land values and declining building values. As a result, configuration is taken as a particular state of a morphology whose transformation rules are an economic expression of spatiality. Flows are cause and effect in the lagged process of mutual transformation which shapes the urban space.
series DDSS
email
last changed 2003/08/07 16:36

_id ddss9477
id ddss9477
authors Reuter, Wolf
year 1994
title Design As Argumentation and Power-Acting - Theory and Methods
source Second Design and Decision Support Systems in Architecture & Urban Planning (Vaals, the Netherlands), August 15-19, 1994
summary The process of design is seen as the generation, transformation and communication of knowledge in the brains of the professional designers and other persons and groups, who are interested in or concerned by the design output and who would or should participate in the design process. Only if it is known how these kinds of information and communication processes work, computer support is possible. Design thinking follows a microstructural scheme. A steady change of the understan-ding of the problem also changes the sight of the solution and also changes the need for knowled-ge contributing to the solution. In all stages of the design process alternatives or alternative ways of action are generated. The participants communicate about questions feasibility, the distribution of advantages and disadvantages, expected consequences, and other possibilities. They exchange positions and arguments, upon which finally they base their weighting of aspects and their personal judgement. The process of argumentation and evaluation is considered, it can be formalized and supported by formal methods. The decision about a design alternative by different people is not only based on explicit argumentation and/or formal evaluation procedures, but also on the use of power. Different means of power are stated. Some decision making procedures which control the misuse of power, are discussed.
series DDSS
last changed 2003/08/07 16:36

_id ddss9486
id ddss9486
authors Smeltzer, Geert
year 1994
title The Application of Virtual Reality Systems in Architectural Design Processes
source Second Design and Decision Support Systems in Architecture & Urban Planning (Vaals, the Netherlands), August 15-19, 1994
summary This paper describes the application of virtual reality systems in architectural design processes. It is based upon research on virtual reality technology to develop a more natural interface between men and design systems. It is also based upon the development of an integrated laboratory set-up for an immersive and a desk-top virtual reality system. This set-up should offer possibilities to manipulate 3D design models and to simulate the lighting situation in real time. Finally it is based upon an application of virtual reality technology for a design presentation. The research problem was determined by the question in which way the design process changes under the influence of technology. Other research questions, autonomous as possible, were how natural an interface can be using sensors, how a design model can be using real world features and how a representation can be as realistic as possible, using lighting simulations. The development problem was determined by the fact that the laboratory set-up had to be developed in co-operation with a hardware and a software vendor. This led to the development of two set-ups: one immersive virtual reality system and one desk top system. Another problem for the development of the set-up was that the project had to result in the presentation and demonstration of virtual reality technol-ogy that was not yet generally available to a larger group of organisations or enterprises. The first case study involved the development of a virtual reality presentation of a housing project in the Netherlands. The presentation was meant for people who were interested in the houses and was announced as a virtual open house. A potential buyer could walk through the model and move furniture around. The problem addressed concerned the relationship between the level of detail of the model, the speed of representation and the ease of interface system's. The second case study concerned the use of a virtual reality interface, model and representation for the evaluation of visibility and safety aspects of another housing project. At first this application was meant for the designers and their client. Based upon their evaluation of the design, several design improvements were made. Afterwards, this application was used for internal demonstrations. The application for the evaluation and the demonstrations were developed for an immersive virtual reality system and for a desk top system. The problem addressed was first of all a design problem and secondly a technical problem. This technical problem was related to the difference between the two virtual reality systems in terms of consequences for those applications. In the near future the research project, called the Asterisk project, will also examine and develop the possibilities of the simultaneous use of the system by more than one user, possibly on different locations. This means a development from single user single site to a multi user, a multiple site virtual reality systems. This project will also evaluate the feasibility of the application of virtual reality technology during an architectural design process. This research project will be followed by the development of a prototype of a virtual architecture system demonstrations of this system and an introduction to the market.
series DDSS
email
last changed 2003/08/07 16:36

_id 89a8
authors Smeltzer, Geert T.A.
year 1994
title Virtual Reality in Architecture
doi https://doi.org/10.52842/conf.ecaade.1994.x.e4i
source The Virtual Studio [Proceedings of the 12th European Conference on Education in Computer Aided Architectural Design / ISBN 0-9523687-0-6] Glasgow (Scotland) 7-10 September 1994, pp. 244
summary This short presentation will describe the application of a Virtual Reality system for the architectural design process. This is based on the results of research into 6 technology and in particular on the possibilities of a natural interface between a designer and a design system. This description is also based on the development of a laboratory setup for a “fully immersive” (all-round representation) and a “partially immersive” (stereo representation) 6 application. This application offers a designer the possibility of modify-ing and assessing a 3D design model in “Virtual Reality” This presentation is mainly based on the use of Virtual Reality in the course of several case studies. One of these case studies was the making of a presenta-tion of a design to possibly interested parties. The other case study was the use of Virtual Reality in the course of a design process. Finally this publication includes the description of some future and anticipated developments. The research problem is mainly posed by the questions regarding the ways in which the design process changes under the influence of, amongst other factors, the 6 technology. Other questions concern the ways in which the interface between a designer and a design system can be made as natural as possible, the way in which a design model can be made as autonomous as possible, and the way in which a representation can be made as realistic as possible. With regard to these the starting points were respectively the use of sensors, behaviour characteristics and illumination simulations. The development problem is posed by the question regarding the way in which a laboratory setup, in cooperation with a supplier of hardware (Sun Microsystems Nederland BV) and a supplier of software (Autodesk Benelux BV), can be developed. In order to do this use has to be made of their system components, such as workstations and CAD software. Another problem for the development of the laboratory setup is the way in which the project was to be made to lead to presentations and demonstra-tions of 6 technology which was still not yet generally available. The first case study was the development of a 6 presentation of a housing project. This presentation was in the first instance intended for people who had an interest in the project. In addition, naturally, people who really only had an interest in Virtual Reality itself also attended. The presentation was announced as being a first Virtual Open House. Each interested party could wander through the 3D design model and move the furniture. In the course of this case study consideration was above all given to the relationships between the interfaces between the user and the system, the level of detail of the model and the speed of the representation. The second case study was the use of Virtual Reality during a design process. The system is used for the evaluation of visibility and safety aspects of another housing project. The use of the system was initially only intended for the designer and the principal. At the end of the process different design modifications were effected in accordance with their evaluations of the design. After that the system was also used for internal presentations of the applications as well as of the technology. The problem which played a role in the course of these studies was in the first instance a design problem and in the second in-stance a technical problem.

series eCAADe
last changed 2022/06/07 07:50

_id b110
id b110
authors Abadi Abbo, Isaac and Cavallin Calanche, Humerto
year 1994
title Ecological Validity of Real Scale Models
source Beyond Tools for Architecture [Proceedings of the 5th European Full-scale Modeling Association Conference / ISBN 90-6754-375-6] Wageningen (The Netherlands) 6-9 September 1994, pp. 31-40
summary Space simulation is a technique employed by architects, urban designers, environmental psychologists and other related specialists. It is used for academic and research purposes, as an aid to evaluate the impact that the built environment or that to be built would yield in potential or real users. Real Scale Model is organized as one of the models which represents more reliable spatial characteristics in space simulations. However, it is necessary to know the ecological validity of the simulations carried out, that is the degree in which laboratory results could be taken as reliable and representative of real situations. In order to discover which variables of the model used are relevant so that their perception results ecologically valid in respect to reality, a research has been designed in which simulations of specific spaces are appraised both in real space and in the real scale model. The results of both evaluations were statistically analyzed and it shows no significative differences in psychological impressions between the evaluation of real spaces and real scale model. These ecological validation of the real scale model could be of great use to estimate the validity of the results obtained in spaces simulated in the laboratory.
keywords Model Simulation, Real Environments
series other
type normal paper
more http://info.tuwien.ac.at/efa
last changed 2006/06/24 09:29

_id ca51
authors Asanowicz, Aleksander
year 1994
title CAFE: Composition for Architects - Forms and Emotions
doi https://doi.org/10.52842/conf.ecaade.1994.x.l3s
source The Virtual Studio [Proceedings of the 12th European Conference on Education in Computer Aided Architectural Design / ISBN 0-9523687-0-6] Glasgow (Scotland) 7-10 September 1994, pp. 249
summary In the architectural creation process there has always been an inclination to improve the methods of designing in the way of ,,objectivization" of designing process. Objectivization which would explain why we do design in this way and not the other. In spite of the trend to the total objectivization (Vitruvius, Alberti, Palladio), the results appeared to be still subjective, i.e. they included methods of designing typical of the one and only architect. This fact made them completely useless in the designing practice. On the other hand one cannot underestimate their meaning as to this very practice. Because it is just thanks to them that the development of designing studies has taken place. We do learn not only watching works of great architects, but also studying their opinions concerning problems of form, function and construction. That is why it seems to be useful to collect experiences concerning the classic theory of architectural composition, which have been gathered through centuries, as well as to try once again to objectivize the process. Composition information arranged in the form of data-base would create the ground for proper functioning of an expert system uniting diagnostic and planning functions. Study of that kind, not claiming design applications could be an excellent educational equipment in teaching architectural composition. In the proposed teaching system attempts have been made to look at the architectural composition theory in the light of the perception of the form, and - emerging in this process - emotional and aesthetic evaluations. In order to define which evaluations have been most often expressed during the perception process of architectural forms, the students of Architecture Faculty in Bialystok Technical University have been polled on the subject: ,,Which words are most commonly used in the descriptions of architecture works?"

series eCAADe
email
last changed 2022/06/07 07:50

_id sigradi2008_049
id sigradi2008_049
authors Benamy, Turkienicz ; Beck Mateus, Mayer Rosirene
year 2008
title Computing And Manipulation In Design - A Pedagogical Experience Using Symmetry
source SIGraDi 2008 - [Proceedings of the 12th Iberoamerican Congress of Digital Graphics] La Habana - Cuba 1-5 December 2008
summary The concept of symmetry has been usually restricted to bilateral symmetry, though in an extended sense it refers to any isometric transformation that maintains a certain shape invariant. Groups of operations such as translation, rotation, reflection and combinations of these originate patterns classified by modern mathematics as point groups, friezes and wallpapers (March and Steadman, 1974). This extended notion represents a tool for the recognition and reproduction of patterns, a primal aspect of the perception, comprehension and description of everything that we see. Another aspect of this process is the perception of shapes, primary and emergent. Primary shapes are the ones explicitly represented and emergent shapes are the ones implicit in the others (Gero and Yan, 1994). Some groups of shapes known as Semantic Shapes are especially meaningful in architecture, expressing visual features so as symmetry, rhythm, movement and balance. The extended understanding of the concept of symmetry might improve the development of cognitive abilities concerning the creation, recognition and meaning of forms and shapes, aspects of visual reasoning involved in the design process. This paper discusses the development of a pedagogical experience concerned with the application of the concept of symmetry in the creative generation of forms using computational tools and manipulation. The experience has been carried out since 1995 with 3rd year architectural design students. For the exploration of compositions based on symmetry operations with computational support we followed a method developed by Celani (2003) comprising the automatic generation and update of symmetry patterns using AutoCAD. The exercises with computational support were combined with other different exercises in each semester. The first approach combined the creation of two-dimensional patterns to their application and to their modeling into three-dimensions. The second approach combined the work with computational support with work with physical models and mirrors and the analysis of the created patterns. And the third approach combined the computational tasks with work with two-dimensional physical shapes and mirrors. The student’s work was analyzed under aspects such as Discretion/ Continuity –the creation of isolated groups of shapes or continuous overlapped patterns; Generation of Meta-Shapes –the emergence of new shapes from the geometrical relation between the generative shape and the structure of the symmetrical arrangement; Modes of Representation –the visual aspects of the generative shape such as color and shading; Visual Reasoning –the derivation of 3D compositions from 2D patterns by their progressive analysis and recognition; Conscious Interaction –the simultaneous creation and analysis of symmetry compositions, whether with computational support or with physical shapes and mirrors. The combined work with computational support and with physical models and mirrors enhanced the students understanding on the extended concept of symmetry. The conscious creation and analysis of the patterns also stimulated the student’s understanding over the different semantic possibilities involved in the exploration of forms and shapes in two or three dimensions. The method allowed the development of both syntactic and semantic aspects of visual reasoning, enhancing the students’ visual repertoire. This constitutes an important strategy in the building of the cognitive abilities used in the architectural design process.
keywords Symmetry, Cognition, Computing, Visual reasoning, Design teaching
series SIGRADI
email
last changed 2016/03/10 09:47

_id ee23
authors Bille, Pia
year 1994
title A Study of Color
doi https://doi.org/10.52842/conf.ecaade.1994.185
source The Virtual Studio [Proceedings of the 12th European Conference on Education in Computer Aided Architectural Design / ISBN 0-9523687-0-6] Glasgow (Scotland) 7-10 September 1994, pp. 185-190
summary Color courses are traditionally based on exercises carried out with either water color or colored paper. Use of the computer as a tool for teaching color theory and analyzing color in architecture was the topic of a course given at the School of Architecture and Planning at the State University of New York at Buffalo, USA where I was an exchange faculty in the academic year 1993/94. The course was structured into 3 topics: color theory, color perception and application of color.
series eCAADe
email
last changed 2022/06/07 07:52

_id e1a1
authors Rodriguez, G.
year 1996
title REAL SCALE MODEL VS. COMPUTER GENERATED MODEL
source Full-Scale Modeling in the Age of Virtual Reality [6th EFA-Conference Proceedings]
summary Advances in electronic design and communication are already reshaping the way architecture is done. The development of more sophisticated and user-friendly Computer Aided Design (CAD) software and of cheaper and more powerful hardware is making computers more and more accessible to architects, planners and designers. These professionals are not only using them as a drafting tool but also as a instrument for visualization. Designers are "building" digital models of their designs and producing photo-like renderings of spaces that do not exist in the dimensional world.

The problem resides in how realistic these Computer Generated Models (CGM) are. Moss & Banks (1958) considered realism “the capacity to reproduce as exactly as possible the object of study without actually using it”. He considers that realism depends on: 1)The number of elements that are reproduced; 2) The quality of those elements; 3) The similarity of replication and 4) Replication of the situation. CGM respond well to these considerations, they can be very realistic. But, are they capable of reproducing the same impressions on people as a real space?

Research has debated about the problems of the mode of representation and its influence on the judgement which is made. Wools (1970), Lau (1970) and Canter, Benyon & West (1973) have demonstrated that the perception of a space is influenced by the mode of presentation. CGM are two-dimensional representations of three-dimensional space. Canter (1973) considers the three-dimensionality of the stimuli as crucial for its perception. So, can a CGM afford as much as a three-dimensional model?

The “Laboratorio de Experimentacion Espacial” (LEE) has been concerned with the problem of reality of the models used by architects. We have studied the degree in which models can be used as reliable and representative of real situations analyzing the Ecological Validity of several of them, specially the Real-Scale Model (Abadi & Cavallin, 1994). This kind of model has been found to be ecologically valid to represent real space. This research has two objectives: 1) to study the Ecological Validity of a Computer Generated Model; and 2) compare it with the Ecological Validity of a Real Scale Model in representing a real space.

keywords Model Simulation, Real Environments
series other
type normal paper
more http://info.tuwien.ac.at/efa/
last changed 2004/05/04 14:42

_id 6058
authors Smulevich, Gerard
year 1994
title The Electronic Bauhaus
doi https://doi.org/10.52842/conf.acadia.1994.197
source Reconnecting [ACADIA Conference Proceedings / ISBN 1-880250-03-9] Washington University (Saint Louis / USA) 1994, pp. 197-208
summary This paper describes the use of electronic space in a fourth year undergraduate architectural design studio. It attempts to address the importance of developing a design process that is redefined by the use of computing, integrating concept and perception. This goal is set in the studio exercise, an international student design competition to design an addition to the school of architecture at the original Bauhaus/Weimar. The studio involved re-evaluating the Bauhaus principles of integrating the artist and the craftsman, but in contemporary or post-industrial terms. In 1989 the Wall came down. Seamless access of western telecommunications and media became greatly responsible for the crumbling of the rigid machine-age soviet technocracy; and with it, the former east German city of Weimar, home to the first Bauhaus, was once again a living part of architectural history. When the Association of Collegiate Schools of Architecture announced an international student competition to design a new addition to the school of architecture at the original Bauhaus/Weimar, we immediately decided that this should be an Electronic Bauhaus.
series ACADIA
email
last changed 2022/06/07 07:56

_id 0465
authors Szövényi-Lux, Miklós
year 1994
title Virtual Future!?
doi https://doi.org/10.52842/conf.ecaade.1994.x.o0h
source The Virtual Studio [Proceedings of the 12th European Conference on Education in Computer Aided Architectural Design / ISBN 0-9523687-0-6] Glasgow (Scotland) 7-10 September 1994, p. 215
summary Architecture was born long, long ago with the help of those people who first realised that they are not only building houses but, what is more important, thrilling and has been the focus of many debates, creating space. In the beginning man created space by adding and combining different volumes of masses. They thought that space can be perceived as determined by different points of orientation placed around us. Later people started to realise that perception of space is a little bit more sophisticated. Perhaps everybody has smiled at a baby who standing up for the first time in his life in his playpen, extending his hands towards objects on the nearby table physically unreachable for him. If he was an adult, people would think perhaps something is wrong with him, when he extends his hands towards things we surely know are impossible to reach from his actual position. So how come we can judge with exactitude the place of different objects in space? Maybe by the time needed for the movement to get there. Let us not forget that the baby's first real movement is when he starts to walk and then he starts to get the feeling of this three dimensional world, around which can be only realised simultaneously in space and time. Anyone can say that this is an interesting theory, but who cares? It is said that most of the architects, who are real designers have a keen sense of creating and perceiving space. They are far more interested in the perfection of the created space with all its details than anything else. And here is where a CAD program can come into the picture. Talking about a real CAD program that means from the point of view of a designer, a silent friend who never cheats or boasts, who takes him in SPACE wherever he wants to go and shows him his CREATION as an extending arm between his imagination and the reality.
series eCAADe
last changed 2022/06/07 07:50

_id eaea2005_133
id eaea2005_133
authors Weber, Ralf
year 2006
title Urban space and architectural scale - Two examples of empirical research in architectural aesthetics
source Motion, E-Motion and Urban Space [Proceedings of the 7th European Architectural Endoscopy Association Conference / ISBN-10: 3-00-019070-8 - ISBN-13: 978-3-00-019070-4], pp. 133-149
summary As one of the oldest schools of architecture in Germany, Dresden has a long and continuous tradition in the field of architectural aesthetics and building composition. Architects such as Fritz Schumacher initiated research and teaching in the field in the 1920s, and this was revitalised during the 1950s by Otto Schubert who laid the foundations for a scientific description of the correlation between optics and architectural design, and also worked towards a comprehensive theory of architectural composition. As a result of the architectural ideology of the East German regime, such studies were consigned to near oblivion and the main concern became interior decoration. With the appointment of Professor Ralf Weber, the institute was reestablished in 1994 under its original name, the Institute of Spatial Design (Raumgestaltung). Its new research agenda originated from Weber’s book “On the Aesthetics of Architectural Form - A Psychological Approach to the Structure and the Order of Perceived Architectural Space” (Ashgate 1994). In order to verify some of the hypotheses advanced in the book empirically, members of the institute have been carrying out a number of studies in the areas of oculomotor research and the perceptual foundations of design, and have been addressing issues that would help formulate principles of good architectural form and space applicable to the everyday practice of architectural design. Currently, the Institute of Spatial Design focuses on the further development of the psychological bases of experiencing architecture, as well as on theories of aesthetics and their application in practice. Specifically, attention is paid, on the one hand, to the perception and experience of architecture, i.e. aesthetics, and on the other, to the assemblage of various parts into an overall whole in a building, city or landscape – in other words, architectural composition. These two aspects are naturally inextricably intertwined: the one concerns the reception of architecture, the other, its production. Under these headings, various other areas of interest, such as architectural tectonics, systems of order and proportions, or the issue of scale in architecture, are tackled through dissertations, research projects and seminars. The institute has been cooperating on several studies with the Cognitive & Biological Psychology Unit at the University of Leipzig and the intention is eventually to establish an interdisciplinary research unit for architectural aesthetics.
series EAEA
type normal paper
email
more http://info.tuwien.ac.at/eaea
last changed 2008/04/29 20:46

_id diss_brewster
id diss_brewster
authors Brewster, S.A.
year 1994
title Providing a Structured Method for Integrating Non-Speech Audio into Human-Computer Interfaces
source Heslington, York: University of York
summary This thesis provides a framework for integrating non-speech sound into human-computer interfaces. Previously there was no structured way of doing this, it was done in an ad hoc manner by individual designers. This led to ineffective uses of sound. In order to add sounds to improve usability two questions must be answered: What sounds should be used and where is it best to use them? With these answers a structured method for adding sound can be created. An investigation of earcons as a means of presenting information in sound was undertaken. A series of detailed experiments showed that earcons were effective, especially if musical timbres were used. Parallel earcons were also investigated (where two earcons are played simultaneously) and an experiment showed that they could increase sound presentation rates. From these results guidelines were drawn up for designers to use when creating usable earcons. These formed the first half of the structured method for integrating sound into interfaces. An informal analysis technique was designed to investigate interactions to identify situations where hidden information existed and where non-speech sound could be used to overcome the associated problems. Interactions were considered in terms of events, status and modes to find hidden information. This information was then categorised in terms of the feedback needed to present it. Several examples of the use of the technique were presented. This technique formed the second half of the structured method. The structured method was evaluated by testing sonically-enhanced scrollbars, buttons and windows. Experimental results showed that sound could improve usability by increasing performance, reducing time to recover from errors and reducing workload. There was also no increased annoyance due to the sound. Thus the structured method for integrating sound into interfaces was shown to be effective when applied to existing interface widgets.
series thesis:PhD
email
more http://www.dcs.gla.ac.uk/~stephen/publications.shtml
last changed 2003/11/28 07:34

_id 48a7
authors Brooks
year 1999
title What's Real About Virtual Reality
source IEEE Computer Graphics and Applications, Vol. 19, no. 6, Nov/Dec, 27
summary As is usual with infant technologies, the realization of the early dreams for VR and harnessing it to real work has taken longer than the wild hype predicted, but it is now happening. I assess the current state of the art, addressing the perennial questions of technology and applications. By 1994, one could honestly say that VR "almost works." Many workers at many centers could doe quite exciting demos. Nevertheless, the enabling technologies had limitations that seriously impeded building VR systems for any real work except entertainment and vehicle simulators. Some of the worst problems were end-to-end system latencies, low-resolution head-mounted displays, limited tracker range and accuracy, and costs. The technologies have made great strides. Today one can get satisfying VR experiences with commercial off-the-shelf equipment. Moreover, technical advances have been accompanied by dropping costs, so it is both technically and economically feasible to do significant application. VR really works. That is not to say that all the technological problems and limitations have been solved. VR technology today "barely works." Nevertheless, coming over the mountain pass from "almost works" to "barely works" is a major transition for the discipline. I have sought out applications that are now in daily productive use, in order to find out exactly what is real. Separating these from prototype systems and feasibility demos is not always easy. People doing daily production applications have been forthcoming about lessons learned and surprises encountered. As one would expect, the initial production applications are those offering high value over alternate approaches. These applications fall into a few classes. I estimate that there are about a hundred installations in daily productive use worldwide.
series journal paper
email
last changed 2003/04/23 15:14

_id a378
authors Friedell, M., Kochhar, S., Marks, J., Sistare, S. and Weitzman, L.
year 1994
title Cooperative design, Human-computer interaction, Interaction techniques, Graphical user interfaces, Design automation, Design methodologies, Automated design of graphical displays, Computer-aided design
source Proceedings of ACM CHI'94 Conference on Human Factors in Computing Systems 1994 v.2 pp.187-188
summary Computer-aided-design (CAD) systems are now used to design all kinds of artifacts, from jet fighters to works of art. A major challenge in the design of a CAD system itself is the user interface (UI). Developing the UI to a CAD system raises myriad questions about input devices and techniques, display devices and techniques, and the details of the dialogue that relates the two. But these questions are ancillary to one central question: what is the fundamental nature of the interaction between human and computer in the design process supported by the CAD system? Is the design activity essentially manual, with the computer playing the role of passive tool, like a pen or paintbrush? Or is the computer augmenting the human designer by actively restricting available design choices, or by playing the role of critic or "improver"? Or maybe the interaction paradigm is one of "interactive evolution," in which the computer is responsible for generating design alternatives, with the human merely choosing among choices suggested by the machine. Or perhaps the computer performs the design process completely automatically, with a final acceptance check being the only human contribution? The panelists will describe these different paradigms for human-computer cooperation in a set of related CAD systems and prototypes and discuss the conditions under which each paradigm might be most useful.
series other
last changed 2002/07/07 16:01

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