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 4 of 4

_id a2b4
id a2b4
authors Rafi A, Khairul A, Samad A, Maizatul H, Mazlan M
year 2005
title Improving spatial ability using a Web-based Virtual Environment (WbVE)
source Automation in Construction
summary Spatial ability is one of the cognitive means used in problem solving activities particularly when manipulating and processing visuo-spatial information. With the increasing use of network communication, conventional teaching and learning has shifted towards the development of network environments, online learning, real-time interaction and high quality multi-user collaboration. This paper presents our experiment using a Web-based Virtual Environment (WbVE) that has improved a group of pre-service teachers' spatial ability understanding for teaching Engineering Drawing for secondary school subjects. The experiment is carried out in Universiti Pendidikan Sultan Idris (UPSI) comprising of 98 pre-service teachers taking the Computer Aided-Design (CAD) course. Selected subjects were pre-tested at the beginning of the semester with spatial tests focusing on mental rotation and spatial visualization to provide the baseline measurement. A desktop WbVE, which was employed and tested in the CAD laboratories to improve their spatial ability for five weeks of instructional treatment, will be demonstrated. Post-testing of spatial tests revealed significantly the overall spatial ability improvements as measured by the test scores. This paper concludes with a discussion on the impact of WbVE spatial learning that will be used as a precedent in the development of the VE teaching and learning prototypes for secondary school in Malaysia.
keywords Web-based virtual environment; engineering drawing; spatial learning
series journal paper
type normal paper
email
more http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6V20-4F9F8J7-1&_user=152310&_coverDate=12%2F31%2F2005&_alid=457968480&_rdoc=1&_fmt=summary&_orig=search&_cdi=5688&_sort=d&_docanchor=&view=c&_acct=C000012578&_version=1&_urlVersion=0&_userid=152310&md5=018e8748a940a11496dcbc2e65832452
last changed 2006/09/29 03:22

_id 955b
id 955b
authors Rafi, A
year 2005
title Information and communication technology (ICT) and intelligent cities: A Malaysian experience
source In Mao-Lin, C. (Ed.), CAAD talk 4: Insights of digital cities (pp. 229-248), Taipei, Taiwan: Archidata
summary This paper reports on Malaysian’s experience in suggesting and maintaining two cybercities (i.e. Putrajaya and Cyberjaya) or Intelligent Cities. The advantage of the convergence of technology has been implemented at national level as a means to increase human participation and to prosper in the Digital Age, in their daily life, business, education and other urban activities. It starts with an overview of ‘High-tech Corridors’ in Asia countries namely Philippines, Thailand, South Korea, and Singapore and its impact to these countries. The foundation of this study presents the criteria of Intelligent Community (IC) that makes a city intelligent without excluding the value of the citizen quality of life, culture and religion by associating with the Information and Communications Technology (ICT). We introduce and present www.i-Putra.com.my, a portal of digital soft city of Malaysia’s new administrative Capital, Putrajaya. This national project is funded by Putrajaya Holdings Sdn. Bhd. Malaysia and was originally developed by the Multimedia University before finally executed by I-Design Sdn. Bhd. It is designed to be an interactive channel to provide the services for different level of target audiences of the civic and urban activities. The guiding principle for i-Putra.com.my portal is content, context, community and commerce in which they will be integrated with the city information such as residential, commercial, service and public areas. It is hoped that this paper gives an example of good intelligent city concepts through a clear vision and planning, effective management, implementation and sustainable approach.
keywords intelligent city, intelligent community (IC), ICT, High-tech Corridors
series book
type normal paper
email
last changed 2007/09/13 03:39

_id 2005_349
id 2005_349
authors Rafi, Ahmad, Izani, Mohd and Tinauli Musstanser
year 2005
title High Dynamic Range Image (HDRI) Rendering
source Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-3-2] Lisbon (Portugal) 21-24 September 2005, pp. 349-356
doi https://doi.org/10.52842/conf.ecaade.2005.349
summary This paper suggests a method known as High Dynamic Range Image (HDRI) to pre-visualise architectural elements in three-dimensional (3D) environment used by Computer Graphic Imaging (CGI) film-makers to integrate 3D models and characters into live action background (special effect). This Intensification Research Priority Area (IRPA) grant project was developed to suggest ways to achieve effective rendering solution and composition of the final output. It will focus on experimental modelling of local cultural elements that provides solutions for radiosity-type effects and dirt shadings. A set of data from an established site (i.e. environment) was captured and represented in High Dynamic Range (HDR) file. This data is integrated with architectural elements (e.g. 3D objects) and then pre-rendered to get the 3D visualisation of the actual environment. Several different exposures were also captured and tested to establish the correct rendering and lighting condition. This earlier result shows that HDRI method provides accurate visualisation and drastically reduces the rendering time without compromising the data (images) with accurate lighting. This paper will demonstrate the process of HDRI, compare the visual impact with ‘radiosity’ technique and other related rendering solutions and present the results, which are useful for architectural animation, simulation and other modelling developments.
keywords HDRI, Pre-Visualisation, Modelling, Rendering
series eCAADe
email
last changed 2022/06/07 07:59

_id 2006_566
id 2006_566
authors Rafi, Ahmad; Mohamad Izani Zainal Abidin; Avijit Paul and Aishah Abdul Razak
year 2006
title Simulation of architectural lighting in a virtual environment - A case study on real and fake High Dynamic Range Images (HDRI)
source Communicating Space(s) [24th eCAADe Conference Proceedings / ISBN 0-9541183-5-9] Volos (Greece) 6-9 September 2006, pp. 566-572
doi https://doi.org/10.52842/conf.ecaade.2006.566
summary The early findings of this research were presented in eCAADe 2005 International Conference, Lisbon primarily to highlight the concept of High Dynamic Range Images (HDRI) when representing architectural spaces in the form of still images. An experiment had been carried out to compare the results between HDRI rendering and ‘conventional’ lighting simulation algorithms namely ray tracing and radiosity. The results were based on static and using the same exposure factors, when capturing HDRI. This project, funded by Intensification Research Priority Area (IRPA) grant continues to present and report HDRI results in a simulation environment. In this paper, we first briefly explain on the concept of real and fake HDRI. Then a comparison experiment is conducted to compare these two methods and discuss the impact and effectiveness of the illumination computation in architectural simulation environment. In order to carry out the experiment, a few models of the architectural scenes were developed. These models were then textured with real photos and manipulated with ‘shaders’, and further rendered using fake and real HDRI techniques. As for the fake HDRI, two methods were developed. The first was using an image as the ambient map and different exposures were created by increasing the value of Hue, V of HSV and saturation. The second involved a series of digital photos with the selection of the brightest and darkest area using Adobe Photoshop to establish the scale of luminosity. A few camera movements were triggered and position for ‘real-time’ rendering simulation. The result of the experiment has shown a significant improvement on the rendering time and quality of the rendering. Finally this paper suggests the selection criteria for choosing real and fake HDRI, and how each technique can be best utilized for architectural representations in a simulation environment.
keywords HDRI; simulation; Real HDRI;Fake HDRI; illumination computation
series eCAADe
email
last changed 2022/06/07 07:59

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