DocumentCode
3542808
Title
A two-level load balancing policy for grid computing
Author
El-Zoghdy, S.F. ; Aljahdali, Sultan
Author_Institution
Comput. Sci. Dept., Taif Univ., Taif, Saudi Arabia
fYear
2012
fDate
10-12 May 2012
Firstpage
617
Lastpage
622
Abstract
This paper addresses the problem of scheduling and load balancing in heterogeneous computational grids. We proposed a two-level load balancing policy for the multi-cluster grid environment where computational resources are dispersed in different administrative domains or clusters which are located in different local area networks. The proposed load balancing policy takes into account the heterogeneity of the computational resources. It distributes the system workload based on the processing elements capacity which leads to minimize the overall job mean response time and maximize the system utilization and throughput at the steady state. To evaluate the performance of the proposed load balancing policy, an analytical model is developed. The results obtained analytically are validated by simulating the model using Arena simulation package. The results show that the overall mean job response time obtained by simulation is very close to that obtained analytically. Also, the simulation results show that the performance of the proposed load balancing policy outperforms that of the random and uniform distribution load balancing policies in terms of mean job response time. The improvement ratio decreases as the system workload increases.
Keywords
digital simulation; grid computing; resource allocation; scheduling; Arena simulation package; analytical model; computational resources; grid computing; heterogeneous computational grids; local area networks; multicluster grid environment; overall job mean response time minimization; processing elements capacity; scheduling problem; system utilization maximization; system workload distribution; throughput maximization; two-level load balancing policy; Analytical models; Computational modeling; Queueing analysis; grid computing; load balancing; performance evaluation; queuing theory; resource management; simulation models;
fLanguage
English
Publisher
ieee
Conference_Titel
Multimedia Computing and Systems (ICMCS), 2012 International Conference on
Conference_Location
Tangier
Print_ISBN
978-1-4673-1518-0
Type
conf
DOI
10.1109/ICMCS.2012.6320221
Filename
6320221
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