Performance of VoIP networks using MPLS traffic engineering

This conference paper was presented in the International Conference on Advanced Materials and Engineering Materials, ICAMEM2011; Shenyang, Liaoning; China; 22 November 2011 through 24 November 2011 [© 2012 Trans Tech Publications] The conference paper's definite version is available at: :http:/...

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Asıl Yazarlar: Faisal, Mohammed Fuad Ad, Uddin, Zia, Shil, Shimul
Diğer Yazarlar: Department of Computer Science and Engineering, BRAC University
Materyal Türü: Conference Paper
Dil:English
Baskı/Yayın Bilgisi: © 2012 Trans Tech Publications 2016
Konular:
Online Erişim:http://hdl.handle.net/10361/7041
http://dx.doi.org/10.4028/www.scientific.net/AMR.457-458.927
id 10361-7041
record_format dspace
spelling 10361-70412016-11-30T06:27:12Z Performance of VoIP networks using MPLS traffic engineering Faisal, Mohammed Fuad Ad Uddin, Zia Shil, Shimul Department of Computer Science and Engineering, BRAC University MPLS OPNET Traffic engineering VoIP This conference paper was presented in the International Conference on Advanced Materials and Engineering Materials, ICAMEM2011; Shenyang, Liaoning; China; 22 November 2011 through 24 November 2011 [© 2012 Trans Tech Publications] The conference paper's definite version is available at: :http://dx.doi.org/10.4028/www.scientific.net/AMR.457-458.927 The implementation of Voice over Internet Protocol (VoIP) technology is on the increase because of its ability to enhance operating efficiency and reduce infrastructure cost. Voice and data packets traverse over IP networks with fixed maximum capacity. But susceptibility to traffic congestion which results in delay and packet losses is still a major challenge of VoIP technology. Multiprotocol Label Switching Protocol (MPLS) with Traffic Engineering (TE) is an approved standard technology that has the capabilities to minimize network congestion and improve network performance by reducing delay and packet loss to yield a higher throughput. In this paper, we investigate how MPLS Traffic Engineering can be implemented to reduce traffic congestion on VoIP networks. Published 2016-11-30T06:23:35Z 2016-11-30T06:23:35Z 2012 Conference Paper Faisal, M., Uddin, J., & Shil, S. (2012). Performance of VoIP networks using MPLS traffic engineering. Advanced Materials Research, Vols. 457-458, pp. 985-988, 2012 doi:10.4028/ http://hdl.handle.net/10361/7041 http://dx.doi.org/10.4028/www.scientific.net/AMR.457-458.927 en http://www.scientific.net/AMR.457-458.927 © 2012 Trans Tech Publications
institution Brac University
collection Institutional Repository
language English
topic MPLS
OPNET
Traffic engineering
VoIP
spellingShingle MPLS
OPNET
Traffic engineering
VoIP
Faisal, Mohammed Fuad Ad
Uddin, Zia
Shil, Shimul
Performance of VoIP networks using MPLS traffic engineering
description This conference paper was presented in the International Conference on Advanced Materials and Engineering Materials, ICAMEM2011; Shenyang, Liaoning; China; 22 November 2011 through 24 November 2011 [© 2012 Trans Tech Publications] The conference paper's definite version is available at: :http://dx.doi.org/10.4028/www.scientific.net/AMR.457-458.927
author2 Department of Computer Science and Engineering, BRAC University
author_facet Department of Computer Science and Engineering, BRAC University
Faisal, Mohammed Fuad Ad
Uddin, Zia
Shil, Shimul
format Conference Paper
author Faisal, Mohammed Fuad Ad
Uddin, Zia
Shil, Shimul
author_sort Faisal, Mohammed Fuad Ad
title Performance of VoIP networks using MPLS traffic engineering
title_short Performance of VoIP networks using MPLS traffic engineering
title_full Performance of VoIP networks using MPLS traffic engineering
title_fullStr Performance of VoIP networks using MPLS traffic engineering
title_full_unstemmed Performance of VoIP networks using MPLS traffic engineering
title_sort performance of voip networks using mpls traffic engineering
publisher © 2012 Trans Tech Publications
publishDate 2016
url http://hdl.handle.net/10361/7041
http://dx.doi.org/10.4028/www.scientific.net/AMR.457-458.927
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