Case for support : Perceptually Realistic Environments for Architectural Planning and Visual Impact Assessment

Lead Research Organisation: University of Bristol
Department Name: Computer Science

Abstract

Computer-generated high-fidelity augmented reality visualisations ofproposed architectural developments can play a significant role inhelping a viewer understand the visual impact on the environment,especially in sensitive locations. Such interactive visualisations havethe potential to greatly improve both the initial design process, and thesubsequent planning application and public consultation processes. Thecurrent lack of robust automatic methods for acquisition of site contextgeometry, together with the performance demands of producinghigh-fidelity renderings in real-time, has meant the adoption of suchtechniques within the architectural industry has, to date, been limited.The proposed research represents a unique confluence of computer vision,high-fidelity rendering, and real-time 3D augmented reality techniques,only possible through the combination of strengths of the partners. Thenovel techniques we will develop in the areas of automaticreconstruction from wide-baseline images, image-based lighting, andreal-time global illumination, will be scoped by the demands of a realarchitectural application with our industrial partner Napper Architects,and English Heritage. Our techniques will be informed by the stringentfidelity requirements of a mixed-reality application suited to providingvisual impact assessment for sensitive developments.The research plan comprises four work packages which will be integratedto deliver a prototype demonstrator system which will support: theautomatic creation of an accurate 3D computer model of the developmentsite, interactive experimentation with different design and lightingscenarios, and interactive exploration by the general public of thevisual impact of the proposed development. The system will beextensively validated at a number of stages throughout the project usinga combination of comparisons with still images, video footage,ground-truth data and public consultation. During the lifetime of thisproject, our industrial partner Napper Architects will be engaged in asmall and defined sensitive architectural project with English Heritage.Models and data from these will be made available as a test case. Inaddition to the novel research outcomes, and prototype software fromthis project, we will develop new fidelity metrics for the benefitof the architectural, planning, and consultation communities.

Publications

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Debattista K (2011) Wait-free shared-memory irradiance caching. in IEEE computer graphics and applications

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Debattista K (2009) Instant Caching for Interactive Global Illumination in Computer Graphics Forum

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Satylmys P (2017) A Machine-Learning-Driven Sky Model. in IEEE computer graphics and applications

 
Description Napper3D 
Organisation Napper3D
Country United Kingdom 
Sector Private 
Start Year 2007