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Meeting virtual organization performance goals through adaptive grid reconfiguration

Published: 19 September 2007 Publication History

Abstract

In order for Grids to become relied upon for critical infrastructure and scientific computing, Grid-wide management must be automated so that it is possible in quickly and comprehensively respond to or anticipate specific environmental changes and requirements. That is, due to the disjoint administration of Grids which results in high communication requirements as well as large numbers of skilled administrators, manual reconfiguration of large portions of a Grid in such situations is not a viable solution. We have developed an architecture that allows changes to the grid configuration to be automated in response to operator input or sensors placed throughout the Grid. Additionally, our architecture allows the resource owner to specify who is allowed to alter the configuration of his resource and what types of reconfigurations are allowed. This permits the automation of reconfiguration while retaining owner control of the individual resources. Our experiments show that this architecture can be used to reconfigure a representative GT4-based development grid to enforce maximum latency limits on a Virtual Organization’s jobs by dynamically controlling job priorities Grid-wide.

References

[1]
J. Martin-Flatin, S. Znaty, J. Hubaux. "A Survey of Distributed Network and Systems Management Paradigms" Journal of Network and Systems Management. 7(1). pp 9-22. 1999.
[2]
M. Mountzia, D. Benech. "Communication Requirements and Technologies for Multi-Agent Management Systems." Eighth IFIP/IEEE International Workshop on Distributed Systems Operations and Management (DSOM'97). Sydney, Australia. 1997.
[3]
M. Endler. "The Design of SAMPA." The Second International Workshop on Services in Distributed and Networked Environments. June 1995. IEEE Press.
[4]
S. D. Taylor. "Distributed System Management Architectures". Masters Thesis, 1006, University of Waterloo, Ontario, Canada.
[5]
S. Hariri, B. Khargharia, H. Chen, J. Yang, Y. Zhang, M. Parashar, and H. Liu. The Autonomic Computing Paradigm. Cluster Computing 9, 5- 17, 2006.
[6]
J. Kephart and D. Chess. The Vision of Autonomic Computing. Computer Magazine, IEEE, January 2003.
[7]
Hawkeye: A Monitoring and Management Tool for Distributed Systems. http://www.cs.wisc.edu/condor/hawkeye/
[8]
SCALEA-G: A Unified Performance Monitoring and Analysis System for Grids. http://www.dps.uibk.ac.at/projects/scaleag/
[9]
R-GMA: Relational Grid Monitoring Architecture. http://www.rgma.org/
[10]
GridMon - Grid Network Performance Monitoring for UK e-Science. http://gridmon.dl.ac.uk/
[11]
INCA Test Harness and Reporting Framework. http://inca.sdsc.edu/
[12]
I. Legrand, H. Newman, R. Voicu, C. Cirstoiu, C. Grigoras, M. Toarta, and C. Dobre. MonALISA: An Agent based, Dynamic Service System to Monitor, Control and Optimize Grid based Applications. CHEP 2004, Interlaken, Switzerland, September 2004.
[13]
Virtual Data Toolkit. http://vdt.cs.wisc.edu/
[14]
P. Beckman, S. Nadella, N. Trebon, and I. Beschastnikh. SPRUCE: A System for Supporting Urgent High-Performance Computing. IFIP WoCo9 Conference Proceedings, Arizona July 2006.
[15]
J. C. Knight, D. Heimbigner, A. Wolf, A. Carzaniga, J. Hill, P. Devanbu, and M. Gertz., "The Willow Architecture: Comprehensive Survivability for Large-Scale Distributed Applications," Intrusion Tolerance Workshop, ICDSN-2002, June 2002.
[16]
J. Rowanhill, "Survivability Management Architecture for Very Large Distributed Systems," Ph.D. Thesis, University of Virginia, July 2004.
[17]
J. Rowanhill, "Efficient Hierarchic Management for Reconfiguration of Networked Information Systems," ICDSN, Florence, Italy, June 2004.
[18]
P. Varner, "Policy Specification for Non-Local Fault Tolerance in Large Distributed Information Systems", M.S. Thesis, May 2003.

Cited By

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  • (2009)Service mediation and negotiation bootstrapping as first achievements towards self-adaptable grid and cloud servicesProceedings of the 6th international conference industry session on Grids meets autonomic computing10.1145/1555301.1555302(1-8)Online publication date: 15-Jun-2009
  • (2009)Applicability of the willow architecture for cloud managementProceedings of the 1st workshop on Automated control for datacenters and clouds10.1145/1555271.1555279(31-36)Online publication date: 19-Jun-2009

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cover image Guide Proceedings
GRID '07: Proceedings of the 8th IEEE/ACM International Conference on Grid Computing
September 2007
339 pages
ISBN:9781424415595

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IEEE Computer Society

United States

Publication History

Published: 19 September 2007

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View all
  • (2009)Service mediation and negotiation bootstrapping as first achievements towards self-adaptable grid and cloud servicesProceedings of the 6th international conference industry session on Grids meets autonomic computing10.1145/1555301.1555302(1-8)Online publication date: 15-Jun-2009
  • (2009)Applicability of the willow architecture for cloud managementProceedings of the 1st workshop on Automated control for datacenters and clouds10.1145/1555271.1555279(31-36)Online publication date: 19-Jun-2009

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