Title :
Single-Pass Composable 3D Lens Rendering and Spatiotemporal 3D Lenses
Author :
Borst, Christoph W. ; Tiesel, Jan-Phillip ; Habib, Emad ; Das, Kaushik
Author_Institution :
Center for Adv. Comput. Studies, Univ. of Louisiana at Lafayette, Lafayette, LA, USA
Abstract :
We present a new 3D lens rendering technique and a new spatiotemporal lens. Interactive 3D lenses, often called volumetric lenses, provide users with alternative views of data sets within 3D lens boundaries while maintaining the surrounding overview (context). In contrast to previous multipass rendering work, we discuss the strengths, limitations, and performance costs of a single-pass technique especially suited to fragment-level lens effects, such as color mapping, lighting, and clipping. Some object-level effects, such as a data set selection lens, are also incorporated, with each object´s geometry being processed once by the graphics pipeline. For a substantial range of effects, our approach supports several composable lenses at interactive frame rates without performance loss during increasing lens intersections or manipulation by a user. Other cases, for which this performance cannot be achieved, are also discussed. We illustrate possible applications of our lens system, including Time Warp lenses for exploring time-varying data sets.
Keywords :
computational geometry; lenses; solid modelling; time warp simulation; data set selection lens; fragment-level lens effect; graphics pipeline; interactive 3D lens; interactive frame rate; object geometry; object-level effect; performance cost; single-pass composable 3D lens rendering technique; spatiotemporal 3D lens technique; time varying data set; time warp lens; volumetric lens; Geometry; Graphics processing unit; Lenses; Rendering (computer graphics); Shape; Three dimensional displays; Transforms; Interaction styles; virtual reality; volumetric lens.;
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
DOI :
10.1109/TVCG.2011.38