Logo PTI
Polish Information Processing Society
Logo RICE

Annals of Computer Science and Information Systems, Volume 10

Proceedings of the Second International Conference on Research in Intelligent and Computing in Engineering

Performance Enhancement Heterogeneous Based EECP for Bandwidth Utilization

,

DOI: http://dx.doi.org/10.15439/2017R89

Citation: Proceedings of the Second International Conference on Research in Intelligent and Computing in Engineering, Vijender Kumar Solanki, Vijay Bhasker Semwal, Rubén González Crespo, Vishwanath Bijalwan (eds). ACSIS, Vol. 10, pages 207215 ()

Full text

Abstract. Using the increase of user made on distributed network scheme, traffic congestion is one of the necessary circumstances. Distributed network consists of various networks, processors and intermediary strategies that overwork the changes or routers with high traffic and it is because of the project fault in the circulated networking architecture. Even though several researchers address the congestion recognition method, its avoidance and modification in their investigation are solid to be explored for any effective solution for this problem. Due to huge network congestion user will face the network speed problem, real congestion control methods are desirable, and mainly to solve``bursty'' transportation of today's for actual extraordinary speed networks. Subsequently dawn 90's many systems have been proposed. This paper concentrates on heterogeneity based congestion mechanism patterns on the basis of certain key performance metrics. Mainly in this work we will judge the performance of Delay, congestion rate, throughput and channel capacity EECP based solution for a steady state against these key performance metrics.

References

  1. Selvarani Rangaswamy and Vinodha Krishnareddy “An efficient traffic regulation mechanism for distributed networks” Rangaswamy and Krishnareddy EURASIP Journal on Wireless Communications and Networking (2015) 2015:154
  2. Z Sheng et al., A survey on the ietf protocol suite for the internet of things: standards, challenges, and opportunities. Wireless Commun IEEE 20(6), 91–98 (2013)
  3. Jiman Hong, Joongjin Kook, Sangjun Lee, Dongseop Kwon and Sangho Yi, “T-LEACH: The method of threshold-based cluster head replacement for wireless sensor networks”, Journal Information Systems Frontiers, Vol. 11, Issue 5, pp 513-521, Nov 2009.
  4. W. R .Heinzelman, A.Chandrakasan and H. Balakrishnan, “Energy Efficient Communication Protocol for Wireless Microsensor Networks”, Proceedings of the 33 Hawaii International Conference on System Sciences 2000
  5. S. Tanachaiwiwat, P. Dave, R. Bhindwale and A. Heimy, “Location- centric Isolation of Misbehavior and Trust Routing in Energy Constrained Sensor Netwoks”, IEEE International Conference on Performance Computing and Communicatiobs, 2004
  6. Mani Zarei, Amir Msoud Rahmani, Avesta Sasan, Mohammad Teshnehlab, “Fuzzy based trust estimation for congestion control in wireless sensor networks”, 2009 International Conference on Intelligent Networking and Collaborative Systems.
  7. Mani Zarei, Amir Msoud Rahmani, Razieh Farazkish, Sara Zahirnia,“FCCTF: Fairness Congestion Control for a distrustful wireless sensor network using Fuzzy logic”, 2010 10th International Conference on Hybrid Intelligent Systems
  8. A. Chakraborty, S. Ganguly, M.K.Naskar, A.Karmakar, “A Trust Based Fuzzy Algorithm for Congestion Control in Wireless Multimedia Sensor Networks (TFCC)”, proceedings. of the 2nd International Conference on Informatics Electronics & Vision, ICIEV , Dhaka, Bangladesh, 2013.
  9. RFC, The Internet and its architecture have grown in evolutionary fashion from modest beginnings. rather than from a Grand Plan, 1958
  10. T Li, Design goals for scalable Internet routing, in Work in progress, draft-irtf-rrgdesign-goals, 2010
  11. Fernadez, P. M. N. McKeown, and H. Zhang, “Is IP going to take over the world of communications?,” in First Workshop on Hot Topics in Networks (HotNets-I), Princeton, NJ, October, 2002.
  12. Bulteman, D.C.A. SMIL 2.0.2. Examples and Comparisons, IEEE Multimedia 9(1), pp. 74-84, 2002.
  13. Braden, B. et al, Recommendation on Sequence Management and Congestion Avoidance in the Internet IETF RFC, 2309 April 1998.
  14. Ilya Grigorik. Published by O'Reilly Media, Inc. 2013 Licensed under CC BY-NC-ND 4.0.