DocumentCode :
2537320
Title :
Optimizing HPC Fault-Tolerant Environment: An Analytical Approach
Author :
Jin, Hui ; Chen, Yong ; Zhu, Huaiyu ; Sun, Xian-He
Author_Institution :
Dept. of Comput. Sci., Illinois Inst. of Technol., Chicago, IL, USA
fYear :
2010
fDate :
13-16 Sept. 2010
Firstpage :
525
Lastpage :
534
Abstract :
The increasingly large ensemble size of modern High-Performance Computing (HPC) systems has drastically increased the possibility of failures. Performance under failures and its optimization become timely important issues facing the HPC community. In this study, we propose an analytical model to predict the application performance. The model characterizes the impact of coordinated checkpointing and system failures on application performance, considering all the factors including workload, the number of nodes, failure arrival rate, recovery cost, and checkpointing interval and overhead. Based on the model, we gauge three parameters, the number of compute nodes, checkpointing interval, and the number of spare nodes to conduct a comprehensive study of performance optimization under failures. Performance scalability under failures is also studied to explore the performance improvement space for different parameters. Experimental results from both synthetic and actual system failure logs confirm that the proposed model and optimization methodologies are effective and feasible.
Keywords :
checkpointing; fault tolerant computing; optimisation; HPC fault-tolerant environment; checkpointing interval parameter; compute nodes parameter; high-performance computing; optimization; performance optimization; performance scalability; spare nodes parameter; Checkpointing; Computational modeling; Equations; Estimation; Maintenance engineering; Optimization; Random variables; Checkpointing; Fault Tolerance; High-Performance Computing; Performance Optimization; Scalability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel Processing (ICPP), 2010 39th International Conference on
Conference_Location :
San Diego, CA
ISSN :
0190-3918
Print_ISBN :
978-1-4244-7913-9
Electronic_ISBN :
0190-3918
Type :
conf
DOI :
10.1109/ICPP.2010.80
Filename :
5599253
Link To Document :
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