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Reseach Article

Quality Engineering of Distributed System with Hassle Free Load Curve Optimization

by J. Jeyachitra, K. Iyakutti, K. Alagarsamy
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 77 - Number 11
Year of Publication: 2013
Authors: J. Jeyachitra, K. Iyakutti, K. Alagarsamy
10.5120/13441-1219

J. Jeyachitra, K. Iyakutti, K. Alagarsamy . Quality Engineering of Distributed System with Hassle Free Load Curve Optimization. International Journal of Computer Applications. 77, 11 ( September 2013), 38-45. DOI=10.5120/13441-1219

@article{ 10.5120/13441-1219,
author = { J. Jeyachitra, K. Iyakutti, K. Alagarsamy },
title = { Quality Engineering of Distributed System with Hassle Free Load Curve Optimization },
journal = { International Journal of Computer Applications },
issue_date = { September 2013 },
volume = { 77 },
number = { 11 },
month = { September },
year = { 2013 },
issn = { 0975-8887 },
pages = { 38-45 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume77/number11/13441-1219/ },
doi = { 10.5120/13441-1219 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T21:50:02.766652+05:30
%A J. Jeyachitra
%A K. Iyakutti
%A K. Alagarsamy
%T Quality Engineering of Distributed System with Hassle Free Load Curve Optimization
%J International Journal of Computer Applications
%@ 0975-8887
%V 77
%N 11
%P 38-45
%D 2013
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Distributed system presents the possible approaches for distribution and aggregation of diverse set of resources such as computers, storage space systems and other specific devices. Normally, these set of resources are processed by the different set of users in different organizations. So, the users might contain diverse objectives and plans and their activities is very complex to differentiate. And also when the demand over the system increases, the load balancing problem arises and the traffic over the systems increases. So, it is necessary to improve the load balancing in the distributed system by means of distributing the application load with software engineering traffic principles. Jun Zhang et. al. , presented a novel non-parametric technique for traffic classification which can develop the performance of the classification efficiently by integrating associated information into the classification method. However the traffic classification using non-parametric and non engineering approach fails to balance the load effectively in distributed system. So, in this work, we plan to improve the quality of load balancing in the distributed system by adapting Hassle-free Curved Optimization (HCO) traffic engineering principle. The HCO traffic engineering principle is presented with this research for effective load balancing and communication cost in distributed system. Heuristic algorithm is followed in HCO principle with given communication pattern to produces an optimal solution for effective distributed data/service communication. The experimental performance of HCO traffic engineering principle is evaluated with Solar Flare Data Set from UCI repository against existing non-parametric approach for effective load balancing scheme to attain quality assurance, effective load balancing with minimal communication cost.

References
  1. Jun Zhang. , Yang Xiang. , Yu Wang, Wanlei Zhou. , Yong Xiang, and Yong Guan. , "Network Traffic Classification Using Correlation Information," IEEE TRANSACTIONS ON PARALLEL AND DISTRIBUTED SYSTEMS,2013
  2. Rodrigo Rodrigues. , Barbara Liskov. , Kathryn Chen, Moses Liskov, and David Schultz. , "Automatic Reconfiguration for Large-Scale Reliable Storage Systems. ," IEEE TRANSACTIONS ON DEPENDABLE AND SECURE COMPUTING, VOL. 9, NO. 2, MARCH/APRIL 2012
  3. Larry C. Llewellyn. , Kenneth M. Hopkinson. , and Scott R. Graham. , "Distributed Fault-Tolerant Quality of Wireless Networks," IEEE TRANSACTIONS ON MOBILE COMPUTING, VOL. 10, NO. 2, FEBRUARY 2011
  4. Djamel Djenouri. , and Ilangko Balasingham. , "Traffic-Differentiation-Based Modular QoS Localized Routing for Wireless Sensor Networks," IEEE TRANSACTIONS ON MOBILE COMPUTING, VOL. 10, NO. 6, JUNE 2011
  5. Bo Chen. , and Harry H. Cheng. , " A Review of the Applications of Agent Technology in Traffic and Transportation Systems," IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, VOL. 11, NO. 2, JUNE 2010
  6. Theoni Pitoura. , Nikos Ntarmos. , and Peter Triantafillou. , "Saturn: Range Queries, Load Balancing and Fault Tolerance in DHT Data Systems," IEEE TRANSACTIONS ON KNOWLEDGE AND DATA ENGINEERING, VOL. 24, NO. 7, JULY 2012
  7. Noel De Palma. , Daniel Hagimont, Fabienne Boyer. , and Laurent Broto. , "Self-Protection in a Clustered Distributed System. ," IEEE TRANSACTIONS ON PARALLEL AND DISTRIBUTED SYSTEMS, VOL. 23, NO. 2, FEBRUARY 2012
  8. Ali M. Alakeel et. Al. , 'A Fuzzy Dynamic Load Balancing Algorithm for Homogenous Distributed Systems', World Academy of Science, Engineering and Technology 61 2012
  9. M. Rantonen, T. Frantti, and K. Leiviskä, "Fuzzy expert system for load balancing in symmetric multiprocessor systems," Journal of Expert Systems with Applications, Vol. 37 No. 12, pp. 8711-8720, December, 2010.
  10. L. Singh, A. Narayan, and S. Kumar, "Dynamic fuzzy load balancing on LAM/MPI clusters with applications in parallel master-slave implementations of an evolutionary neuro-fuzzy learning system," IEEE International Conference on Fuzzy Systems, pp. 1782-1788, June 2008.
Index Terms

Computer Science
Information Sciences

Keywords

Distributed system load balancing traffic engineering principle Hassle-free curved optimization Heuristic algorithm