19 November 2008 Failure probability analysis of optical grid
Author Affiliations +
Proceedings Volume 7137, Network Architectures, Management, and Applications VI; 713736 (2008) https://doi.org/10.1117/12.803811
Event: Asia-Pacific Optical Communications, 2008, Hangzhou, China
Optical grid, the integrated computing environment based on optical network, is expected to be an efficient infrastructure to support advanced data-intensive grid applications. In optical grid, the faults of both computational and network resources are inevitable due to the large scale and high complexity of the system. With the optical network based distributed computing systems extensive applied in the processing of data, the requirement of the application failure probability have been an important indicator of the quality of application and an important aspect the operators consider. This paper will present a task-based analysis method of the application failure probability in optical grid. Then the failure probability of the entire application can be quantified, and the performance of reducing application failure probability in different backup strategies can be compared, so that the different requirements of different clients can be satisfied according to the application failure probability respectively. In optical grid, when the application based DAG (directed acyclic graph) is executed in different backup strategies, the application failure probability and the application complete time is different. This paper will propose new multi-objective differentiated services algorithm (MDSA). New application scheduling algorithm can guarantee the requirement of the failure probability and improve the network resource utilization, realize a compromise between the network operator and the application submission. Then differentiated services can be achieved in optical grid.
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Yaoquan Zhong, Yaoquan Zhong, Wei Guo, Wei Guo, Weiqiang Sun, Weiqiang Sun, Yaohui Jin, Yaohui Jin, Weisheng Hu, Weisheng Hu, } "Failure probability analysis of optical grid", Proc. SPIE 7137, Network Architectures, Management, and Applications VI, 713736 (19 November 2008); doi: 10.1117/12.803811; https://doi.org/10.1117/12.803811


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