Innovative Congestion Control Algorithm for High Speed Networks

R. Uma Rani, T Lakshmi Narayanan

Abstract


Nowadays, more and more applications require fast transfer of massive data over networks, and the emergences of high-speed networks provide an ideal solution to this challenge. Due to the limitations of the conservative congestion control algorithm, the standard TCP is no longer appropriate for high- speed networks to efficiently utilize the bandwidth resources. A new congestion control algorithms for high-speed networks. It uses packet loss information to determine whether the window size should be increased or decreased, and uses queuing delay information to determine the amount of increment or decrement.

Keywords


High-speed networks, Delay-based approach, Loss-based approach

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References


M. Allman, V. Paxson, E. Blanton, TCP Congestion Control, RFC 5681, IETF, September 2009.

. S. Floyd, T. Henderson, The new reno modification to TCPs fast recovery algorithm, RFC 2582, 1999.

. V. Jacobson, Congestion avoidance and control, ACM Computer Communication Review 18 (August) (1988) 314–329.

. V. Jacobson, Berkeley TCP evolution from 4.3-tahoe to 4.3-reno, in: Proceedings of the Eighteenth Internet Engineering Task Force, July1990.

. S. Liu, T. Basar, R. Srikant, and TCP- Illinois: A loss and delay-based congestion control algorithm for high-speed networks, in: Proc. First International Conference on Performance Evaluation Methodologies and Tools, VALUETOOLS, Pisa, Italy, October 2006.

. M. Mathis, J. Mahdavi, S. Floyd, A. Romanow, TCP selective acknowledgement options.

. Kolawole I. Oyeyinka1, Ayodeji O. Oluwatope2, Adio. T. Akinwale3, Olusegun Folorunso3, Ganiyu A. Aderounmu2, Olatunde O. Abiona, TCP Window Based Congestion Control Slow-Start Approach, Communications and Network, 2011, 3, 85-98.

. D. Papadimitriou, M. Welzl, M. Scharf, B. Briscoe, Open research issues in Internet congestion control, RFC 6077, IRTF, February 2011.

. M. Scharf, Performance evaluation of fast startup congestion control schemes, in: Proc. IFIP Networking 2009, LNCS, vol. 5550, Springer Verlag, 2009, pp. 716–727.

. M. Scharf, Fast startup Internet congestion control mechanisms for broadband interactive applications, submitted Ph.D. Thesis, University of Stuttgart, November 2009.

. M. Scharf, Comparison of end-to-end and network-supported fast startup congestion control schemes, Computer Network Journal ,Feb 2011

. W. Stevens, TCP/IP Illustrated, in: The Protocols, vol. 1, Addison-Wesley, 1994.

. K. Tan, J. Song, Q. Zhang, M. Sridharan, A compound TCP approach for high-speed and long distance networks, in: Proceedings of IEEE Infocom, April 2006.

. Wenjun Xu, ZudeZhou, D.T.Pham, C.Ji, M.Yang, QuanLiu,

Hybrid congestion control for high-speed networks, Journal of

Network and Computer Applications 34 (2011) 1416–1428.

. Wei DX, Cao P. A Linux TCP. Implementation for NS2 2007.

. Xiaolong Qian, Yuanwei Jing, Jing Tian, “Network congestion avoidance strategy with particle filter”, Computer Communications 31 (2008) 1723–1726.






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