IP Network Performance Measuring Based on I/O Correlation Model


(*) Corresponding author


Authors' affiliations


DOI's assignment:
the author of the article can submit here a request for assignment of a DOI number to this resource!
Cost of the service: euros 10,00 (for a DOI)

Abstract


Network performance measuring provides an effective way of collecting first-hand’s data for network behavior analysis. It is also the foundation for high performance protocol analysis, network equipment development, networks plan and management, and applications. Japanese scientists have first found that network traffic manifests high auto-correlation from long-range dependence. Based on analysis of network behavior and traffic between its input and output (I/O), the study presents a measuring model based on the I/O correlation for network performance testing. The proposed method is applied to practice. Experimental results demonstrate that network traffic exhibits asymmetric volatility in both short-range and long-range observations. I/O correlations vary in the short-range observation, while similarity and autocorrelation from long-range dependence is implied. The measuring results from long-range observation reflect in accord with actual states of the network at different periods. The results also conclude that network traffic characterizes itself as similarity, autocorrelation and asymmetric volatility from long-range dependence, and with varying degrees in short-range correlation. The proposed method is shown its potential practicality.
Copyright © 2013 Praise Worthy Prize - All rights reserved.

Keywords


IP Network; Network Traffic; Performance Measuring; I/O Correlation Model

Full Text:

PDF


References


J.W. Zhang, M.H. Jia, Research on IP Networks Performance Test, Telecom Engineering Techniques and Standardization(In Chinese), Vol.1, n. 11, pp.64-66,2003

Q.J. JI, Y.N. DONG, A survey on modeling IP network performance characteristics, Journal of China Institute of Communications, Vol. 25, n. 3, pp.52-153,2004

G. H. Telstra, Measuring IP Network Performance, The Internet Protocol Journal, Vol. 6, n. 1, pp.2-19, 2003.

J. C. QUAN, Experimental analysis of auto-correlation s effects on traffic prediction of IP network data, Journal of PLA University of Science and Technology (Natural Science), Vol. 6, n. 5, pp.436-440, 2005.

S. Bradner, Benchmarking Terminology for Network Interconnection Devices ( RFC1242,July, 1991).

S. Bradner, Benchmarking Methodology for Network Interconnect Devices(RFC2544,March, 1999).

B.H. Wang, Information physic research based on the Internet, CCCN2008 Report (Page: 1-5, Peking University, Oct.11, 2008).

Internet Traffic Report, Details for misschaos.chaos-studio.com, http://www.internettrafficreport.com/history/296.htm, July, 18, 2009.

A. Shaabany, J. Fatemeh Modeling and Simulation of Traffic in High Speed Networks based MMPP, International Review on Computers and Software, Vol. 3, n. 6, pp. 1281-1288, 2010.

A. R. Fereidouni, H. Nafisi, M. Garmrudi, H. H. Dezaki, The Effect of Distributed Generation in Distribution Network on Coordination of Protective Devices, International Review on Computers and Software,Vol. 4 N. 4,pp. 1773-1780, 2011.

S. Nahi, S. Hajforoosh, S. H. Nabavi, Automation System Software and Dispatching of Electricity Networks, International Review on Computers and Software, Vol. 4 N. 4 pp. 1781-1790, 2011.


Refbacks

  • There are currently no refbacks.



Please send any question about this web site to info@praiseworthyprize.com
Copyright © 2005-2024 Praise Worthy Prize