Title :
Astrolabe: a Grid Operating Environment with Full-fledged Usability
Author :
Lin, Hailue ; Chen, Kun ; Yan, Xiaohui
Author_Institution :
Inst. of Comput. Technol., Chinese Acad. of Sci., Beijing
Abstract :
Based on a comprehensive analysis of existing grid portals and problem-solving environments, Astrolabe, a feature-rich grid operating environment built on a fine- tuned client/server architecture is presented in this paper. In Astrolabe, a dynamic portlet container is deployed at the client side to provide portlets with more powerful runtime capabilities such as rich interfaces, local resource access- ability and offline usage, comparing to the JSR-168 specification. A workflow designer is built upon the portlet container to provide integrated workflow modeling capability. Moreover, server-side components are also employed to enable portability and collaboration among users. The main contribution of this paper is bringing the aforementioned features as a full package, which could improve the usability of current grid computing environments. Eclipse RCP is utilized for the implementation of Astrolabe to leverage the state of the art of rich client technologies.
Keywords :
client-server systems; grid computing; problem solving; workflow management software; Astrolabe; Eclipse RCP; JSR-168 specification; client-server architecture; dynamic portlet container; feature-rich grid operating environment; grid operating environment; local resource accessability; problem-solving environments; server-side components; workflow designer; Collaborative work; Computers; Containers; Grid computing; Packaging; Portals; Problem-solving; Research and development; Runtime; Usability;
Conference_Titel :
Grid and Cooperative Computing, 2007. GCC 2007. Sixth International Conference on
Conference_Location :
Los Alamitos, CA
Print_ISBN :
0-7695-2871-6
DOI :
10.1109/GCC.2007.46