A Collaborative Virtual Reality Environment for Molecular Modeling
Identifieur interne : 001E98 ( Istex/Checkpoint ); précédent : 001E97; suivant : 001E99A Collaborative Virtual Reality Environment for Molecular Modeling
Auteurs : Sungjun Park [Corée du Sud] ; Jun Lee [Corée du Sud] ; Jee-In Kim [Corée du Sud]Source :
- Lecture Notes in Computer Science [ 0302-9743 ] ; 2006.
Abstract
Abstract: A collaborative molecular modeling environment based on virtual reality techniques is proposed in this paper. The environment consists of a VR based molecular modeling system (VRMMS), a distributed processing system (DPS) and a web service server (WSS). The proposed environment was evaluated in terms of accuracy, performance, and collaboration. The accuracy of the simulation was examined by comparing the simulation results with those produced by the most popular simulation tool, Insight II. The distributed processing system of 4 computers showed good computing performance. The collaborative works of molecular modeling were successfully exercised and the total processing time of the collaboration was 3 times faster than that of a single user’s performance.
Url:
DOI: 10.1007/11941354_33
Affiliations:
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<front><div type="abstract" xml:lang="en">Abstract: A collaborative molecular modeling environment based on virtual reality techniques is proposed in this paper. The environment consists of a VR based molecular modeling system (VRMMS), a distributed processing system (DPS) and a web service server (WSS). The proposed environment was evaluated in terms of accuracy, performance, and collaboration. The accuracy of the simulation was examined by comparing the simulation results with those produced by the most popular simulation tool, Insight II. The distributed processing system of 4 computers showed good computing performance. The collaborative works of molecular modeling were successfully exercised and the total processing time of the collaboration was 3 times faster than that of a single user’s performance.</div>
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