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Brian E. Paul

dblp:01/2820 · DBLP profile ↗
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4ranked-venue papers
1as first author
0since 2021 · last 2008
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Human-computer interaction and ubiquitous computing · 3Graphics, computer vision, multimedia, augmented reality and games · 1 · 1 first-author

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer graphics and multimedia
1 paper
Rendering · 100%

Topics — the 3 heaviest of 3, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Rendering
parallel rendering
0.112008
Chromium Renderserver: Scalable and Open Remote Rendering Infrastructure · IEEE Trans. Vis. Comput. Graph. 2008
Rendering
remote rendering
0.112008
Chromium Renderserver: Scalable and Open Remote Rendering Infrastructure · IEEE Trans. Vis. Comput. Graph. 2008
Rendering
GPU rendering
0.012008
Chromium Renderserver: Scalable and Open Remote Rendering Infrastructure · IEEE Trans. Vis. Comput. Graph. 2008

Methods — techniques the papers use, named apart from their topics

performance analysis · 0.1X11/OpenGL command stream synchronization · 0.1
YearPublicationVenuePosition
2008 Chromium Renderserver: Scalable and Open Remote Rendering Infrastructure
abstract
Chromium Renderserver (CRRS) is software infrastructure that provides the ability for one or more users to run and view image output from unmodified, interactive OpenGL and X11 applications on a remote, parallel computational platform equipped with graphics hardware accelerators via industry-standard Layer 7 network protocols and client viewers. The new contributions of this work include a solution to the problem of synchronizing X11 and OpenGL command streams, remote delivery of parallel hardware accelerated rendering, and a performance analysis of several different optimizations that are generally applicable to a variety of rendering architectures. CRRS is fully operational, Open Source software. imagery and sending it to a remote viewer.
Brian E. Paul, Sean Ahern, E. Wes Bethel, Eric Brugger, Rich Cook, Jamison Daniel, Ken Lewis, Jens Owen, Dale Southard
IEEE Trans. Vis. Comput. Graph.1
1994 A Lattice Model for Data Display
abstract
In order to develop a foundation for visualization, we develop lattice models for data objects and displays that focus on the fact that data objects are approximations to mathematical objects and real displays are approximations to ideal displays. These lattice models give us a way to quantize the information content of data and displays and to define conditions on the visualization mappings from data to displays. Mappings satisfy these conditions if and only if they are lattice isomorphisms. We show how to apply this result to scientific data and display models, and discuss how it might be applied to recursively defined data types appropriate for complex information processing.>
Bill Hibbard, Charles R. Dyer, Brian E. Paul
IEEE Visualization3
1992 Display of Scientific Data Structures for Algorithm Visualization
abstract
A technique for defining graphical depictions for all the data types defined in an algorithm is presented. The ability to display arbitrary combinations of an algorithm's data objects in a common frame of reference, coupled with interactive control of algorithm execution, provides a powerful way to understand algorithm behavior. Type definitions are constrained so that all primitive values occurring in data objects are assigned scalar types. A graphical display, including user interaction with the display, is modeled by a special data type. Mappings from the scalar types into the display model type provide a simple user interface for controlling how all data types are depicted, without the need for type-specific graphics logic.>
Bill Hibbard, Charles R. Dyer, Brian E. Paul
IEEE Visualization3
1992 Visualization Requirements in the Atmospheric and Environmental Sciences (Five Case Study Reports)
abstract
Reports from five research centers involved with atmospheric and environmental visualization issues are presented in this case study. Visualization with heterogeneous computer architectures is highlighted in the US EPA Scientific Visualization Center discussion. The NASA Marshall Space Flight Center effort to develop the multidimensional analysis of sensor systems (MASS) environment is presented. Florida State University's building of a new scientific visualization package, Sci An, is reported. This is followed by a discussion of the design and implementation of VIS-AD, an experimental laboratory for developing scientific algorithms, at the University of Wisconsin-Madison. The visualization of global atmospheric data at IBM Thomas J. Watson Research Center is highlighted.>
Theresa-Marie Rhyne, Mark Bolstad, Penny Rheingans, Lynne Petterson, Walter Shackelford, Mike E. Botts, E. Pepke, K. W. Johnson, Bill Hibbard, Charles R. Dyer, Brian E. Paul, Lloyd Treinish
IEEE Visualization11