DocumentCode :
3469999
Title :
An analytical throughput model for bulk data transfers over wide area networks
Author :
Simitci, Huseyin
Author_Institution :
XIOtech Corp., Eden Prairie, MN, USA
fYear :
2004
fDate :
19-22 April 2004
Firstpage :
602
Lastpage :
609
Abstract :
This work presents an analytical queuing network model for bulk data transfers over long distances. Large scale scientific applications like climate modeling and high energy physics generate huge amounts of data that needs to be replicated across long distances for collaboration purposes. In addition, businesses need to copy critical data to remote sites for disaster recovery. The performance of these kinds of applications depends on the latency of the link due to the physical distance between the sites. The model presented in this paper uses the most prominent characteristics of remote data transfer applications and simplifies the performance prediction. This study shows that the overall throughput is mostly determined by the latency of the link, bandwidth of the link, number of round trips required for each I/O operation, and the number of simultaneously active I/O operations (asynchronous window size). Through laboratory and field experiments, we show that the model is capable of approximating the performance of remote data transfers within a very small error range.
Keywords :
delays; natural sciences computing; performance evaluation; queueing theory; replicated databases; wide area networks; analytical throughput model; asynchronous window size; bulk data transfers; climate modeling; disaster recovery; high energy physics; large scale scientific applications; latency; performance; queuing network model; remote data transfer; replicated data; simultaneously active I/O operations; wide area networks; Analytical models; Bandwidth; Collaborative work; Delay; Laboratories; Large-scale systems; Predictive models; Queueing analysis; Throughput; Wide area networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Cluster Computing and the Grid, 2004. CCGrid 2004. IEEE International Symposium on
Print_ISBN :
0-7803-8430-X
Type :
conf
DOI :
10.1109/CCGrid.2004.1336668
Filename :
1336668
Link To Document :
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