Open Access   Article Go Back

Simulation of Wide Area Network for Multiple Offices Connectivity Using Enhanced Interior Gateway Routing Protocol (EIGRP)

Amanze 1 , B.C. 2 , Nwoke 3 , B.C 4 , Agoha 5 , U.K 6

Section:Review Paper, Product Type: Journal Paper
Volume-7 , Issue-6 , Page no. 1045-1050, Jun-2019

CrossRef-DOI:   https://doi.org/10.26438/ijcse/v7i6.10451050

Online published on Jun 30, 2019

Copyright © Amanze, B.C., Nwoke, B.C, Agoha, U.K . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

View this paper at   Google Scholar | DPI Digital Library

How to Cite this Paper

  • IEEE Citation
  • MLA Citation
  • APA Citation
  • BibTex Citation
  • RIS Citation

IEEE Style Citation: Amanze, B.C., Nwoke, B.C, Agoha, U.K, “Simulation of Wide Area Network for Multiple Offices Connectivity Using Enhanced Interior Gateway Routing Protocol (EIGRP),” International Journal of Computer Sciences and Engineering, Vol.7, Issue.6, pp.1045-1050, 2019.

MLA Style Citation: Amanze, B.C., Nwoke, B.C, Agoha, U.K "Simulation of Wide Area Network for Multiple Offices Connectivity Using Enhanced Interior Gateway Routing Protocol (EIGRP)." International Journal of Computer Sciences and Engineering 7.6 (2019): 1045-1050.

APA Style Citation: Amanze, B.C., Nwoke, B.C, Agoha, U.K, (2019). Simulation of Wide Area Network for Multiple Offices Connectivity Using Enhanced Interior Gateway Routing Protocol (EIGRP). International Journal of Computer Sciences and Engineering, 7(6), 1045-1050.

BibTex Style Citation:
@article{_2019,
author = {Amanze, B.C., Nwoke, B.C, Agoha, U.K},
title = {Simulation of Wide Area Network for Multiple Offices Connectivity Using Enhanced Interior Gateway Routing Protocol (EIGRP)},
journal = {International Journal of Computer Sciences and Engineering},
issue_date = {6 2019},
volume = {7},
Issue = {6},
month = {6},
year = {2019},
issn = {2347-2693},
pages = {1045-1050},
url = {https://www.ijcseonline.org/full_paper_view.php?paper_id=4678},
doi = {https://doi.org/10.26438/ijcse/v7i6.10451050}
publisher = {IJCSE, Indore, INDIA},
}

RIS Style Citation:
TY - JOUR
DO = {https://doi.org/10.26438/ijcse/v7i6.10451050}
UR - https://www.ijcseonline.org/full_paper_view.php?paper_id=4678
TI - Simulation of Wide Area Network for Multiple Offices Connectivity Using Enhanced Interior Gateway Routing Protocol (EIGRP)
T2 - International Journal of Computer Sciences and Engineering
AU - Amanze, B.C., Nwoke, B.C, Agoha, U.K
PY - 2019
DA - 2019/06/30
PB - IJCSE, Indore, INDIA
SP - 1045-1050
IS - 6
VL - 7
SN - 2347-2693
ER -

VIEWS PDF XML
218 253 downloads 139 downloads
  
  
           

Abstract

Wide Area Network (WAN) is a critical important functionality of modern businesses because latency, jitter and packet loss associated with WAN often causes performance of applications to degrade, the outage of WAN link often causes one or more sites to be offline and the lead time to either install a new WAN link or to increase the capacity of existing WAN link can be quite lengthy. This paper focuses on the summary of the key components of some of the emerging approaches to WAN architecture and design and concludes with a call to action that outlines a project plan that network organizations can use to evolve their WAN. The motivation for this paper is to reduce the cost of transmission lines and equipment and improve network performance and response time. The approach taken in the design is based on approaching the high availability service problem from three perspectives; network resiliency, device resiliency and operational resiliency. Top down methodology which considers requirement analysis before technology selection is used. Packet tracer and operating Cisco IOS software are the design tools employed in the implementation of this paper.

Key-Words / Index Term

WAN, EIGRP, QoS and Top Down Methodology

References

[1] Black, U. (1997). Emerging Communications Technologies, 2nd ed., New Jersey: Prentice Hall.
[2] Pawlita, P.F. (1992). “Traffic measurements in data networks: recent measurement results and some implications”, IEEE Trans. Comms., April, Vol. Com.30, N0.4
[3] Verbiest (1988). “Broadband ISDN and Asynchronous Transfer Mode (ATM)”,@ IEEE Communications Magazine, September, Vol. 27, N0. 9
[4] Odinma-Okafor, A. (1991). “The characteristics of variable rate video signals”, Ph.D Thesis in Telecommunications Engineering, The University of London.
[5] Odinma-Okafor, A. and Cosmas, J. (1992). “Impact of time series and counting process approaches to video source modelling”, 9th UK Teletraffic Symposium, IEE, April.
[6] Grunenfelder, R., Cosmas, J., Manthorpe, S. and Odinma-Okafor, A. (1990). “The characterization of video codecs as autoregressive moving average processes and related queuing system performance”, IEEE J –SAC, April, Vol. 9, N0. 3, pp. 284-293.
[7] Brady P.T. (1965). “A technique for investigating on-off patterns of speech”, Bell Syst. Tech. Journal, Vol. XIV, January.
[8] Gruber, J.G. (1992). “A comparison of measured and calculated speech temporal parameters relevant to speech activity detection”, IEEE Trans. Comms. April, Vol. COM-30, N0. 4
[9] Milonas, A.C. (2000). “Enterprise networking for the new millennium”, Bell Labs. Tech. Journal, January – March, vol. 5, N0. 1, pp. 73-93.
[10] Weiss, W. (1998). “QoS with differential services”, Bell Labs Tech. Journal, October –December, pp. 48-62.
[11] Odinma, A.C. and Oborkhale, L. (2006). Quality of Service Mechanisms and Challenges for IP Networks, PJST, May, Vol. 7, N0. 1.
[12] Cisco (2010). Interconnecting Cisco Networking Devices: Part 2, Vol. Version 1.1, United Kingdom.