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 390

_id 1bb0
authors Russell, S. and Norvig, P.
year 1995
title Artificial Intelligence: A Modern Approach
source Prentice Hall, Englewood Cliffs, NJ
summary Humankind has given itself the scientific name homo sapiens--man the wise--because our mental capacities are so important to our everyday lives and our sense of self. The field of artificial intelligence, or AI, attempts to understand intelligent entities. Thus, one reason to study it is to learn more about ourselves. But unlike philosophy and psychology, which are also concerned with AI strives to build intelligent entities as well as understand them. Another reason to study AI is that these constructed intelligent entities are interesting and useful in their own right. AI has produced many significant and impressive products even at this early stage in its development. Although no one can predict the future in detail, it is clear that computers with human-level intelligence (or better) would have a huge impact on our everyday lives and on the future course of civilization. AI addresses one of the ultimate puzzles. How is it possible for a slow, tiny brain{brain}, whether biological or electronic, to perceive, understand, predict, and manipulate a world far larger and more complicated than itself? How do we go about making something with those properties? These are hard questions, but unlike the search for faster-than-light travel or an antigravity device, the researcher in AI has solid evidence that the quest is possible. All the researcher has to do is look in the mirror to see an example of an intelligent system. AI is one of the newest disciplines. It was formally initiated in 1956, when the name was coined, although at that point work had been under way for about five years. Along with modern genetics, it is regularly cited as the ``field I would most like to be in'' by scientists in other disciplines. A student in physics might reasonably feel that all the good ideas have already been taken by Galileo, Newton, Einstein, and the rest, and that it takes many years of study before one can contribute new ideas. AI, on the other hand, still has openings for a full-time Einstein. The study of intelligence is also one of the oldest disciplines. For over 2000 years, philosophers have tried to understand how seeing, learning, remembering, and reasoning could, or should, be done. The advent of usable computers in the early 1950s turned the learned but armchair speculation concerning these mental faculties into a real experimental and theoretical discipline. Many felt that the new ``Electronic Super-Brains'' had unlimited potential for intelligence. ``Faster Than Einstein'' was a typical headline. But as well as providing a vehicle for creating artificially intelligent entities, the computer provides a tool for testing theories of intelligence, and many theories failed to withstand the test--a case of ``out of the armchair, into the fire.'' AI has turned out to be more difficult than many at first imagined, and modern ideas are much richer, more subtle, and more interesting as a result. AI currently encompasses a huge variety of subfields, from general-purpose areas such as perception and logical reasoning, to specific tasks such as playing chess, proving mathematical theorems, writing poetry{poetry}, and diagnosing diseases. Often, scientists in other fields move gradually into artificial intelligence, where they find the tools and vocabulary to systematize and automate the intellectual tasks on which they have been working all their lives. Similarly, workers in AI can choose to apply their methods to any area of human intellectual endeavor. In this sense, it is truly a universal field.
series other
last changed 2003/04/23 15:14

_id 9577
authors Matalasov, Michail E.
year 1995
title About Videocomputer Technologies at the Moscow Architectural Institute
source CAD Space [Proceedings of the III International Conference Computer in Architectural Design] Bialystock 27-29 April 1995, pp. 303-308
summary Historically mock-up projecting turned out to be one of the bases of architectural education in the Moscow Architectural Institute. In spite of the fact, that technical progress did not pass over this Institute, introducing elements of computer techniques into the process of education, traditional methods do still prevail. In some sense it is a positive phenomenon, which does not allow this Institute to become ,one of the many typical ones", though in the epoch of global scientific and technical progress here this situation is forced. Under the economic conditions, established in this country, it is impossible to ensure such computer equipment, which would make the process of teaching students up-to-date methods of computer-aided design possible and really general, and make frontal employment of computers for solving complex design problems quite real. Now we can speak only about selective - optional teaching students mastering computer methods on the modern level. At the same time it was noted repeatedly, that essential defects are common to the traditional designing, especially when it concerns education; these defects are connected with a great degree of abstracting the model of the projected object (by the way this concerns also computer models), realized in the form of a small-scale mock-up. This is due to the representation of the projected object separated from the real environment as well as difference in the scales of the observer and the observed object. Mistakes in perception and appreciation caused in this way affect the efficiency of training disastrously. Luckily the available variety of sufficiently simple and cheap technical devices allows to overcome the mentioned defects to a considerable degree and combining these devices with personal computers makes it possible to enlarge their possibilities considerably. And at the same time due to the specific character of the employment it becomes unnecessary to have a lot of computers and the employed technologies turn out to be more "friendly" to the architect practically not demanding him to have complicated special knowledge. We mean special videocomputer technologies ("multimedia"), including the employment of periscope devices (environmental simulator or "telemaketoscope").
series plCAD
last changed 2000/01/24 10:08

_id ff69
authors Seok, Lee Han, Sik, Park-Chung and Kim, Dae-Gwon
year 1995
title A Knowledge-Based CAAD system with Qualitative Spatial Reasoning Capability
source Sixth International Conference on Computer-Aided Architectural Design Futures [ISBN 9971-62-423-0] Singapore, 24-26 September 1995, pp. 359-368
summary Design and creativity go hand in hand. The ability to be creative in design can be enhanced when humans and computers, which both work as information processing systems cooperate in a complementary, integrated manner. Computational systems should play the most essential role in enhancing creativity within human-machine design systems in the future. In this context, we present the concept and architecture of a new integrated CAAD System, AutoNEO, that will support the achievement of creative results. We will focus on the qualitative spatial reasoning capability of AutoNEO, and provide an example of layout design as a case of qualitative spatial reasoning.
keywords Knowledge-Based CAAD System, Qualitative Spatial Reasoning, Design Creativity
series CAAD Futures
last changed 1999/08/03 17:16

_id avocaad_2001_16
id avocaad_2001_16
authors Yu-Ying Chang, Yu-Tung Liu, Chien-Hui Wong
year 2001
title Some Phenomena of Spatial Characteristics of Cyberspace
source AVOCAAD - ADDED VALUE OF COMPUTER AIDED ARCHITECTURAL DESIGN, Nys Koenraad, Provoost Tom, Verbeke Johan, Verleye Johan (Eds.), (2001) Hogeschool voor Wetenschap en Kunst - Departement Architectuur Sint-Lucas, Campus Brussel, ISBN 80-76101-05-1
summary "Space," which has long been an important concept in architecture (Bloomer & Moore, 1977; Mitchell, 1995, 1999), has attracted interest of researchers from various academic disciplines in recent years (Agnew, 1993; Benko & Strohmayer, 1996; Chang, 1999; Foucault, 1982; Gould, 1998). Researchers from disciplines such as anthropology, geography, sociology, philosophy, and linguistics regard it as the basis of the discussion of various theories in social sciences and humanities (Chen, 1999). On the other hand, since the invention of Internet, Internet users have been experiencing a new and magic "world." According to the definitions in traditional architecture theories, "space" is generated whenever people define a finite void by some physical elements (Zevi, 1985). However, although Internet is a virtual, immense, invisible and intangible world, navigating in it, we can still sense the very presence of ourselves and others in a wonderland. This sense could be testified by our naming of Internet as Cyberspace -- an exotic kind of space. Therefore, as people nowadays rely more and more on the Internet in their daily life, and as more and more architectural scholars and designers begin to invest their efforts in the design of virtual places online (e.g., Maher, 1999; Li & Maher, 2000), we cannot help but ask whether there are indeed sensible spaces in Internet. And if yes, these spaces exist in terms of what forms and created by what ways?To join the current interdisciplinary discussion on the issue of space, and to obtain new definition as well as insightful understanding of "space", this study explores the spatial phenomena in Internet. We hope that our findings would ultimately be also useful for contemporary architectural designers and scholars in their designs in the real world.As a preliminary exploration, the main objective of this study is to discover the elements involved in the creation/construction of Internet spaces and to examine the relationship between human participants and Internet spaces. In addition, this study also attempts to investigate whether participants from different academic disciplines define or experience Internet spaces in different ways, and to find what spatial elements of Internet they emphasize the most.In order to achieve a more comprehensive understanding of the spatial phenomena in Internet and to overcome the subjectivity of the members of the research team, the research design of this study was divided into two stages. At the first stage, we conducted literature review to study existing theories of space (which are based on observations and investigations of the physical world). At the second stage of this study, we recruited 8 Internet regular users to approach this topic from different point of views, and to see whether people with different academic training would define and experience Internet spaces differently.The results of this study reveal that the relationship between human participants and Internet spaces is different from that between human participants and physical spaces. In the physical world, physical elements of space must be established first; it then begins to be regarded as a place after interaction between/among human participants or interaction between human participants and the physical environment. In contrast, in Internet, a sense of place is first created through human interactions (or activities), Internet participants then begin to sense the existence of a space. Therefore, it seems that, among the many spatial elements of Internet we found, "interaction/reciprocity" Ñ either between/among human participants or between human participants and the computer interface Ð seems to be the most crucial element.In addition, another interesting result of this study is that verbal (linguistic) elements could provoke a sense of space in a degree higher than 2D visual representation and no less than 3D visual simulations. Nevertheless, verbal and 3D visual elements seem to work in different ways in terms of cognitive behaviors: Verbal elements provoke visual imagery and other sensory perceptions by "imagining" and then excite personal experiences of space; visual elements, on the other hand, provoke and excite visual experiences of space directly by "mapping".Finally, it was found that participants with different academic training did experience and define space differently. For example, when experiencing and analyzing Internet spaces, architecture designers, the creators of the physical world, emphasize the design of circulation and orientation, while participants with linguistics training focus more on subtle language usage. Visual designers tend to analyze the graphical elements of virtual spaces based on traditional painting theories; industrial designers, on the other hand, tend to treat these spaces as industrial products, emphasizing concept of user-center and the control of the computer interface.The findings of this study seem to add new information to our understanding of virtual space. It would be interesting for future studies to investigate how this information influences architectural designers in their real-world practices in this digital age. In addition, to obtain a fuller picture of Internet space, further research is needed to study the same issue by examining more Internet participants who have no formal linguistics and graphical training.
series AVOCAAD
email
last changed 2005/09/09 10:48

_id 6cb2
authors Af Klercker, Jonas
year 1995
title Architects Early Sketching on Computer Using Multimedia
doi https://doi.org/10.52842/conf.ecaade.1995.247
source Multimedia and Architectural Disciplines [Proceedings of the 13th European Conference on Education in Computer Aided Architectural Design in Europe / ISBN 0-9523687-1-4] Palermo (Italy) 16-18 November 1995, pp. 247-256
summary This paper presents a development work which aims at practical applications of ideas built on experiences in practise and education and the theoretical development in the BAS.CAAD project. The important difference between BAS.CAAD and CAD programs of today is the possibility to handle user organisation, building design and site in the same program. This means that design today has to be done in at least 3 separate programs with different ways of defining objects. It is then a computer technical problem to mix and study the relations between objects of separate origin. In a recent project our method to overcome this difficulty in CAAD computing was using a Multimedia program making visual simulations to analyse consequences of form etc. As the process went on and forms where more concrete it was possible to make simulations worth showing and discussing to involve colleagues, clients and users.

series eCAADe
email
more http://dpce.ing.unipa.it/Webshare/Wwwroot/ecaade95/Pag_51.htm
last changed 2022/06/07 07:54

_id 0c8e
authors Ager, Mark Thomas and Sinclair, Brian R.
year 1995
title StereoCAD: Three Dimensional Representation
source Sixth International Conference on Computer-Aided Architectural Design Futures [ISBN 9971-62-423-0] Singapore, 24-26 September 1995, pp. 343-355
summary Concepts of stereoscopic vision have been around for more than two thousand years. Despite this long history, its application to the field to architecture and design seems relatively unexplored. Synthesis of two technologies, the stereoscope and the computer, was the focus of the present study. The goal of the research was to determine if computer-generated stereoscopic pairs hold value for architectural design. Using readily available computer technology (Apple Macintosh) the research team modelled and rendered an existing project to verify the degree of correlation between the physical construct, the computer 3D model and resultant correlation between the physical construct, the computer 3D model and resultant rendered stereo-paired representation. The experiments performed in this study have shown that producing stereo-paired images that highly correlate to reality is possible using technology that is readily available in the marketplace. Both the technology required to produce (i.e., personal computer and modelling/rendering software) and view (i.e., modified stereoscope) the images is unimposing. Both devices can easily fit in a studio or a boardroom and together can be utilized effectively to permit designers, clients and end-users to experience proposed spaces and projects. Furthermore, these technologies are familiar (clients and end-users have already experienced them in other applications and settings) and assume a fraction of the cost of more dynamic, immersive virtual reality systems. Working from this base, limitations of the process as well as future applications of computer-generated stereoscopic images are identified.
keywords Stereovision, Representation, Computers, Architects, Design
series CAAD Futures
last changed 2003/11/21 15:15

_id 5236
authors Arciszewski, T., Michalski, R.S. and Dybala, T.
year 1995
title STAR methodology-based learning about construction accidents and their prevention
source Automation in Construction 4 (1) (1995) pp. 75-85
summary This paper presents the results of a feasibility study concerning the application of STAR-methodology-basedmachine learning to construction accidents and their prevention. A ten-stage knowledge acquisition process is presented and its individual stages described. Knowledge about construction accidents was acquired using a collection of 225 examples, based on actual accidents records. Inductive learning with a system based on the STAR-methodology was employed. This system was used in both the generalization and specialization modes of operation. The decision rules obtained are complex, but their interpretation is clear and they seem to be consistent with the present understanding of causal relationships between accident results and various factors affecting them. Also, the rules were verified using average overall and omission empirical error rates, which were calculated as average for three randomly determined sequences of examples. These error rates were calculated for all seven steps in the machine learning process, and were used to construct learning curves for both error rates. The relationships between error rates and the number of examples used for learning are analyzed, and coefficients of linear regression given and discussed. The 225 examples used were found to be grossly insufficient to produce reliable knowledge about accidents and therefore a large study is postulated which would involve the collection of a larger number of construction accident records. In general, our study demonstrated the feasibility of machine learning in acquiring knowledge about construction accidents.
keywords Construction accidents and their prevention; Knowledge acquisition; Machine learning; Multi-stepmachine learning process
series journal paper
more http://www.elsevier.com/locate/autcon
last changed 2003/06/02 09:31

_id b914
authors Asanowicz, Aleksander and Asanowicz, Katarzyna
year 1995
title Designing, CAD and CAD
source CAD Space [Proceedings of the III International Conference Computer in Architectural Design] Bialystock 27-29 April 1995, pp. 181-192
summary The general aim of our discussion is to analyze what has been changed in design process according to introducing the computers technology. For the better understanding of the design process evolution, we should precisely define start point - the traditional design process.Let's treat it as an iteration game between a designer and user. If we assume that the designing base is a reductive strategy, we can define six stages of it: 1.) To define a need; 2.) To formulate a task; 3.) To synthesize a design proposals; 4.) To analyze and optimize; 5.) To make a presentation. // The last stage - the presentation of designing proposals is the main factor of using computers in design process and creating definition of CAD as Computer Aided Drafting. According to this interpretation CAD has included four groups of activities: A.) Geometrical modelling; B.) Analysis; C.) Revision and estimation of design proposals; D.) Technical drawing preparing. // Unfortunately it has no connections with another meaning of CAD - Computer Aided Design because concerns every stage of design process except of creation of architectural form. On the other hand, computer enables us to improve the design process by permanent perception of designing forms and dynamic control over the transforming structure. Nowadays thanks to full-function sketching workstation and software like Fractal Design Painter a computer can be useful from the moment when the first line is drawing. It is possible, that the new generation of CAD software - CAD with Personality which connects computer models with picture transformation will enable CAD to be Computer Aided Design.
series plCAD
email
last changed 2000/01/24 10:08

_id aab6
authors Bermudez, Julio
year 1995
title Designing Architectural Experiences: Using Computers to Construct Temporal 3D Narratives
doi https://doi.org/10.52842/conf.acadia.1995.139
source Computing in Design - Enabling, Capturing and Sharing Ideas [ACADIA Conference Proceedings / ISBN 1-880250-04-7] University of Washington (Seattle, Washington / USA) October 19-22, 1995, pp. 139-149
summary Computers are launching us into a representational revolution that fundamentally challenges the way we have hitherto conceived and practiced architecture. This paper will explore one of its fronts: the simulation of architectural experiences. Today's off-the-shelf softwares (e.g. 3D modeling, animations, multimedia) allow us for first time in history to depict and thus approach architectural design and criticism truly experientially. What is so appealing about this is the possibility of shifting our attention from the object to the experience of the object and in so doing reconceptualizing architectural design as the design of architectural experiences. Carrying forward such a phenomenological proposition requires us to know (1) how to work with non-traditional and 'quasi-immersive' (or subject-centered) representational systems, and (2) how to construct temporal assemblages of experiential events that unfold not unlike 'architectural stories'. As our discipline lacks enough knowledge on this area, importing models from other fields appears as an appropriate starting point. In this sense, the narrative arts (especially those involved with the temporal representation of audio-visual narratives) offer us the best insights. For example, principles of cinema and storytelling give us an excellent guidance for designing architectural experiences that have a structuring theme (parti), a plot (order), unfolding episodes (rhythm), and special events (details). Approaching architecture as a temporal 3D narrative does transform the design process and, consequently, its results. For instance, (1) phenomenological issues enter the decision making process in an equal footing to functional, technological, or compositional considerations; (2) orthographic representations become secondary sources of information, mostly used for later accurate dimensioning or geometrization; (3) multi-sensory qualities beyond sight are seriously considered (particularly sound, texture, and kinesthetic); etc.
series ACADIA
email
last changed 2022/06/07 07:52

_id 42ad
authors Brown, Karen M. and Charles, Curtis B.
year 1995
title Computers in the Professional Practice of Design
source McGraw-Hill, New York
summary While CADD technology is becoming commonplace in most design firms today, the wherewithal to take full advantage of computer technology generally as a business tool is often missing. This book will give the reader that ``holistic'' information on how to integrate the CADD function with other common applications--from word processing of construction documents to creating project budget spreadsheets to project management to database management. The book will touch on examples of commonly used software packages and hardware platforms, but will otherwise treat those subjects generically.
series other
last changed 2003/04/23 15:14

_id c198
authors Bustinza, Jorge and Fernandez, Antonio
year 1995
title Searching a New Learning Method: Hypermedia System
doi https://doi.org/10.52842/conf.ecaade.1995.083
source Multimedia and Architectural Disciplines [Proceedings of the 13th European Conference on Education in Computer Aided Architectural Design in Europe / ISBN 0-9523687-1-4] Palermo (Italy) 16-18 November 1995, pp. 83-92
summary The use of computers is commonly available to students of architecture nowadays. They can learn specific packages of software and their application in several fields. Very few concern is given, however to the pedagogic capacity of the use of computers in architecture. They are teaching how to use computers instead of using computers to teach. Interactive multimedia and information highways capabilities are to help to the use of computers not only as productivity tools but as mean of communication and education tools as well.

series eCAADe
more http://dpce.ing.unipa.it/Webshare/Wwwroot/ecaade95/Pag_11.htm
last changed 2022/06/07 07:54

_id ff05
authors Butelski, Kazimierz
year 1995
title A Brief Note on Virtual Space
source CAD Space [Proceedings of the III International Conference Computer in Architectural Design] Bialystock 27-29 April 1995, pp. 83-92
summary In its efforts to represent space, and then create architecture on the basis of this representation, humanity has taken three major steps. STEP 1. Representation of space in the form of a drawing or model; representations compared to the mental vision and then redrawn or remodelled, until the vision takes the shape of a finished building. This technology of design" followed different conventions, depending on the epoch. In the Middle Ages the method of approximation by triangles was introduced. The Renaissance used Projection, Elevation and Cross-Section. In order to construct a building, a flat, abstract representation is used, supplemented by a model showing spatial relations and a verbal description, impossible to convey graphically. STEP 2. Methods as in Step 1, but, beginning in the 1970s, with the use of computers, which allows also for the gradual integration of these methods in one program. Theoretically speaking, all necessary data can be now recorded, visualized, animated, etc., on a PC class computer. The design-aid software is based on the method of creating a 3D model of the whole building, and then generating the rest (projections, cross-sections) from it. STEP 3. The above step have - brought us to near- perfection in photorealistic representation of space, which remains, however only a 2D abstraction from 3D space. The next step, which is now taking place before (and in?) our very eyes, is to use systems which bring us directly into 3D space.
series plCAD
last changed 2000/01/24 10:08

_id a472
authors Caneparo, Luca
year 1995
title Coordinative Virtual Space for Architectural Design
source Sixth International Conference on Computer-Aided Architectural Design Futures [ISBN 9971-62-423-0] Singapore, 24-26 September 1995, pp. 739-748
summary The paper explores group coordination in the design process through communicative innovations brought by computers. It is divided into three main sections. The first is the analysis of the design group coordination and communication. The second introduces the concept of Coordinative Virtual Space: this is a common multi-dimensional space where the group members share design information. The third presents the implementation: each member can connect to the shared space through the computer network and display several projections of the design information space.
keywords Collaborative Design, Virtual Workspace, Shared Workspace, Groupware, Design Paradigm
series CAAD Futures
email
last changed 2003/05/16 20:58

_id 80df
authors Cook, Alan R.
year 1995
title Stereopsis in the Design and Presentation of Architectural Works
doi https://doi.org/10.52842/conf.acadia.1995.113
source Computing in Design - Enabling, Capturing and Sharing Ideas [ACADIA Conference Proceedings / ISBN 1-880250-04-7] University of Washington (Seattle, Washington / USA) October 19-22, 1995, pp. 113-137
summary This article presumes the primacy of spatial cognition in evaluating architectural designs and begins by describing key concepts involved in the perception of spatial form, focussing on parallax and stereoscopy. The ultimate emphasis is directed at presenting techniques which employ computers with modest hardware specifications and a basic three-dimensional modeling software application to produce sophisticated imaging tools. It is argued that these techniques are comparable to high end computer graphic products in their potentials for carrying information and in some ways are superior in their speed of generation and economies of dissemination. A camera analogy is considered in relation to controlling image variables. The ability to imply a temporal dimension is explored. An abbreviated summary of pertinent binocular techniques for viewing stereograms precedes a rationalization and initiation for using the cross-convergence technique. Ways to generate and view stereograms and other multiscopic views using 3-D computer models are described. Illustrations from sample projects show various levels of stereogram rendering including the theoretically 4-D wireframe stereogram. The translated perspective array autostereogram is presented as an economical and easily reproducible alternative to holography as well as being a substitute for stop action animation.

series ACADIA
email
last changed 2022/06/07 07:56

_id 8cdd
authors Coyne, Richard
year 1995
title Multimedia Metaphors in the Design Studio
doi https://doi.org/10.52842/conf.ecaade.1995.129
source Multimedia and Architectural Disciplines [Proceedings of the 13th European Conference on Education in Computer Aided Architectural Design in Europe / ISBN 0-9523687-1-4] Palermo (Italy) 16-18 November 1995, pp. 129-138
summary In this paper I examine some of he ways that multimedia impacts upon the design studio. I show how multimedia affects design products and processes in so far as it is caught up in the metaphors we use in structuring design tasks. But this influence is far from deterministic. Metaphors entail various oppositions, the resolution of which sets the problems for the designer in the particular design situation. The article describes two cases of using multimedia in a design studio teaching situation. The first explores how multimedia brings to light the opposition between the design and the presentation of the design. I explore how students cope with the tensions that arise when using multimedia. The second case study looks at the conventional privileging of the visual over the other senses in architectural design. I describe a design studio in which we deliberately privileged the audile sense over the visual. This was established through the way we set the brief, hut also through the use of multimedia technology. Students used sound recorded from the site in conjunction with MIDI keyboard and sound processing technology to analyse and synthesise sound pertinent to the design of a pavilion at the Circular Quay area on the busy Sydney foreshore. We examine what difference this emphasis upon the audile made to the design process and to the design product, and how multimedia affects design.

series eCAADe
email
more http://dpce.ing.unipa.it/Webshare/Wwwroot/ecaade95/Pag_17.htm
last changed 2022/06/07 07:56

_id 1ffd
authors Dave, Bharat
year 1995
title Towards Distributed Computer-Aided Design Environments
source Sixth International Conference on Computer-Aided Architectural Design Futures [ISBN 9971-62-423-0] Singapore, 24-26 September 1995, pp. 659-666
summary Computing in architectural design has followed a number of different visions, hopes and research agendas. One of the dominant themes in design Computing seeks to support various activities of 'individual' designers acting within a 'personal' design realm. Parallel to this is another theme which seeks to blend computing aids into normal working environments of groups of designers. The recent interest in and resurgence of collaborative design tools are steps towards what we view as an emerging theme in design computing, namely distributed design environments. This paper describes experiments in collaborative design using computers, and their observations are used to suggest future directions for integrating computing and design in distributed environments.
keywords Design Computing, Collaborative Work, Distributed Processing, Design Services, Design Products
series CAAD Futures
email
last changed 2003/05/16 20:58

_id 5e49
authors Deering, Michael F.
year 1996
title HoloSketch: A Virtual Reality Sketching/Animation Tool Special Issue on Virtual Reality Software and Technology
source Transactions on Computer-Human Interaction 1995 v.2 n.3 pp. 220-238
summary This article describes HoloSketch, a virtual reality-based 3D geometry creation and manipulation tool. HoloSketch is aimed at providing nonprogrammers with an easy-to-use 3D "What-You-See-Is-What-You-Get" environment. Using head-tracked stereo shutter glasses and a desktop CRT display configuration, virtual objects can be created with a 3D wand manipulator directly in front of the user, at very high accuracy and much more rapidly than with traditional 3D drawing systems. HoloSketch also supports simple animation and audio control for virtual objects. This article describes the functions of the HoloSketch system, as well as our experience so far with more-general issues of head-tracked stereo 3D user interface design.
keywords Computer Graphics; Picture/Image Generation; Display Algorithms; Computer Graphics; Three-Dimensional Graphics and Realism; Human Factors; 3D Animation; 3D Graphics; Graphics Drawing Systems; Graphics Painting Systems; Man-Machine Interface; Virtual Reality
series other
last changed 2002/07/07 16:01

_id 2508
authors Eggli, L. and Bruderlin, B.D. (et al.)
year 1995
title Sketching as a Solid Modeling Tool
source Third Symposium on Solid Modeling and Applications. C. Hoffmann and J. Rossignac. Salt Lake City, ACM: 313-321
summary This paper describes 'Quick-sketch', a 2d and 3d modeling tool for pen based computers. Users of this system define a model by simple pen strokes drawn directly on the screen of a pen-based PC. Lines, circles, arcs, or B-spline curves are automatically distinguished, and interpreted from these strokes. The system also automatically determines relations, such as right angles, tangencies, symmetry, and parallelism, from the sketch input, These relationships are then used to clean up the drawing by making the approximate relationships exact. Constraints are established to maintain the relationships in further editing. A constraint maintenance system, which is based on gestural manipulation and soft constraints, is employed in this system. Several techniques for sketch based definitions of solid objects are provided as well, including extrusion, surface of revolution, ruled surfaces and sweep. Feat ures can be sketched on the surfaces of 3d objects, using the same 2d- and 3d techniques. This way, objects of medium complexity can be sketched in seconds. The system can be used as a front-end to more sophisticated modeling, rendering or animation environments, serving as a hand sketching tool in the preliminary design phase.
series other
last changed 2003/04/23 15:50

_id 6a3a
authors Ekholm, A., Fridqvist, S. and Af Klercker, J.
year 1995
title BAS.CAAD - Building and User Activity Systems Modelling for Computer-Aided Architectural Design
doi https://doi.org/10.52842/conf.ecaade.1995.217
source Multimedia and Architectural Disciplines [Proceedings of the 13th European Conference on Education in Computer Aided Architectural Design in Europe / ISBN 0-9523687-1-4] Palermo (Italy) 16-18 November 1995, pp. 217-230
summary In the early stages of the building design process not only building and site but also user activities and experiences are formed. This paper presents a development programme for CAAD where conceptual models of some fundamental characteristics of building, site and user organisation will be developed and implemented in a prototype CAAD-programme. The models are based both on empirical studies and an ontological Framework which is also used for organising the basic object structure of the prototype CAD program. The architectural design process has several characteristics which a CAAD-programme must support, e.g incremental determination of properties, change of scale and shift of focus. The research investigates how the design object and the user interface can be formed to serve this working method. One important field is to study the usefulness of the user organisation model for the brief and building management stages. The programming work for the prototypes is done with Smalltalk on Macintosh computers. The tests of the prototype includes spatial co-ordination of the three systems.

series eCAADe
email
more http://dpce.ing.unipa.it/Webshare/Wwwroot/ecaade95/Pag_28.htm
last changed 2022/06/07 07:55

_id 0128
authors Engeli, M., Kurmann, D. and Schmitt, G.
year 1995
title A New Design Studio: Intelligent Objects and Personal Agents
doi https://doi.org/10.52842/conf.acadia.1995.155
source Computing in Design - Enabling, Capturing and Sharing Ideas [ACADIA Conference Proceedings / ISBN 1-880250-04-7] University of Washington (Seattle, Washington / USA) October 19-22, 1995, pp. 155-170
summary As design processes and products are constantly increasing in complexity, new tools are being developed for the designer to cope with the growing demands. In this paper we describe our research towards a design environment, within which different aspects of design can be combined, elaborated and controlled. New hardware equipment will be combined with recent developments in graphics and artificial intelligence programming to develop appropriate computer based tools and find possible new design techniques. The core of the new design studio comprises intelligent objects in a virtual reality environment that exhibit different behaviours drawn from Artificial Intelligence (AI) and Artificial Life (AL) principles, a part already realised in a tool called 'Sculptor'. The tasks of the architect will focus on preferencing and initiating good tendencies in the development of the design. A first set of software agents, assistants that support the architect in viewing, experiencing and judging the design has also been conceptualised for this virtual design environment. The goal is to create an optimised environment for the designer, where the complexity of the design task can be reduced thanks to the support made available from the machine.
keywords Architectural Design, Design Process, Virtual Reality, Artificial Intelligence, Personal Agents
series ACADIA
email
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