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  RTfact Concepts for Generic Ray Tracing

Georgiev, I. (2008). RTfact Concepts for Generic Ray Tracing. Master Thesis, Universität des Saarlandes, Saarbrücken.

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資料種別: 学位論文
LaTeX : {RT}fact Concepts for Generic Ray Tracing

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Iliyan Georgiev -MasterThesis_ RTfact - Concepts for Generic Ray Tracing.pdf (全文テキスト(全般)), 6MB
 
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Iliyan Georgiev -MasterThesis_ RTfact - Concepts for Generic Ray Tracing.pdf
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 作成者:
Georgiev, Iliyan1, 著者           
Slusallek, Philipp2, 学位論文主査
Hack, Sebastian2, 監修者
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1International Max Planck Research School, MPI for Informatics, Max Planck Society, ou_1116551              
2External Organizations, ou_persistent22              

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 要旨: For a long time now, interactive 3D graphics has been dominated by rasterization algorithms. However, thanks to more than a decade of research and the fast evolution of computer hardware, ray tracing has recently achieved real-time performance. Thus, it is likely that ray tracing will become a commodity choice for adding complex lighting effects to real-time rendering engines. Nonetheless, interactive ray tracing research has been mostly concentrated on few specific combinations of algorithms and data structures. In this thesis we present RTfact (an attempt to bring the different aspects of ray tracing together in a component oriented, generic, and portable way, without sacrificing the performance benefits of hand-tuned single-purpose implementations. RTfact is a template library consisting of packet-centric components combined into an ecient ray tracing framework. Our generic design approach with loosely coupled algorithms and data structures allows for seamless integration of new algorithms with maximum runtime performance, while leveraging as much of the existing code base as possible. The SIMD abstraction layer of RTfact enables easy porting to new microprocessor architectures with wider SIMD instruction sets without the need of modifying existing code. The eciency of C++ templates allows us to achieve fine component granularity and to incorporate a flexible physically- based surface shading model, which enables exploitation of ray coherence. As a proof of concept we apply the library to a variety of rendering tasks and demonstrate its ability to deliver performance equal to existing optimized implementations.

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言語: eng - English
 日付: 2008-072008
 出版の状態: 出版
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 出版情報: Saarbrücken : Universität des Saarlandes
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 識別子(DOI, ISBNなど): BibTex参照ID: Georgiev2008
 学位: 修士号 (Master)

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