Title :
An interactive remote visualization environment for an electromagnetic scattering simulation on a high performance computing system
Author :
Cheng, Gang ; Lu, Yinghua ; Fox, Geoffrey ; Mills, Kim ; Haupt, Tomasz
Author_Institution :
Northeast Parallel Archit. Center, Syracuse Univ., NY, USA
Abstract :
An integrated interactive visualization environment was created for an electromagnetic scattering (EMS) simulation, coupling a graphical user interface (GUI) for runtime simulation parameters input and 3-D rendering output on a graphical workstation, with computational modules running on a parallel supercomputer and two workstations. Application Visualization System (AVS) was used as integrating software to facilitate both networking and scientific data visualization. Using the EMS simulation as a case study, the authors explore the AVS dataflow methodology to naturally integrate data visualization, parallel systems and heterogeneous computing. Major issues in integrating this remote visualization system are discussed, including task decomposition, system integration, concurrent control, and a high level data-visualization-environment distributed programming model.
Keywords :
data visualisation; electromagnetic wave scattering; graphical user interfaces; parallel programming; physics computing; rendering (computer graphics); 3-D rendering output; AVS dataflow; Application Visualization System; GUI; computational modules; concurrent control; electromagnetic scattering simulation; graphical user interface; graphical workstation; heterogeneous computing; high performance computing system; integrated interactive visualization environment; integrating software; interactive remote visualization environment; networking; parallel supercomputer; runtime simulation parameters input; scientific data visualization; system integration; task decomposition; Computational modeling; Concurrent computing; Data visualization; Electromagnetic coupling; Electromagnetic scattering; Graphical user interfaces; High performance computing; Medical services; Runtime; Workstations;
Conference_Titel :
Supercomputing '93. Proceedings
Print_ISBN :
0-8186-4340-4
DOI :
10.1109/SUPERC.1993.1263476