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DiffServ Aware MPLS Traffic Engineering for ISP Networks: State of the Art and New Trends

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Języki publikacji
EN
Abstrakty
EN
In the recent ten years, with the development of new applications through Internet such as multimedia or networked control applications, users need more and more quality of service (QoS). However, the requested QoS is not the same depending on the application. Most of the new models to manage internet traffic are based on specific QoS criteria which should be optimized. This paper presents main multiprotocol label switching (MPLS) approaches such as MPLS adaptive traffic engineering (MATE), load distribution in MPLS (LDM) and load balancing over widest disjoints paths (LBWDP) that are new models for traffic engineering. It also introduces periodic multi-step (PEMS) algorithm that adapts the offered quality depending on the class of the routed traffic.
Rocznik
Tom
Strony
5--13
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
autor
autor
Bibliografia
  • [1] A. Alles, “ATM internetworking”, in Proc. Eng. InterOp Conf., Las Vegas, USA, 1995.
  • [2] J. C. R Bennett and H. Zhang, “WF2Q: worst-case fair weighted fair queueing”, in Proc. IEEE Infocom’96 Conf. Comput. Commun., San Francisco, USA, 1996.
  • [3] R. Braden, D. Clark, and S. Shenker, “Integrated service in the Internet architecture: an overview”, RFC 1633, June 1994.
  • [4] D. Black, M. Carlson, E. Davies, Z. Wang, and W. Weiss, “An architecture for differentiated service”, RFC 2475, Dec. 1998.
  • [5] B. Fortz, J. Rexford, and M. Thorup, “Traffic engineering with traditional IP routing protocols”, IEEE Commun. Mag., vol. 40, no. 10, pp. 118–124, 2002.
  • [6] J. Ash and W. S. Lai, “Max allocation with reservation bandwidth constraints model for Diffserv-aware MPLS traffic engineering and performance comparisons”, RFC 4126, June 2005.
  • [7] F. Le Faucheur, “Maximum allocation bandwidth constraints model for Diffserv-aware MPLS traffic engineering”, RFC 4125, June 2005.
  • [8] F. Le Faucheur, J. Boyle, W. Townsend, D. Skalecki, K. Kompella, and T. D. Nadeau, “Russian dolls model for DS-TE”, RFC 4127, June 2005.
  • [9] F. Le Faucheur, J. Boyle, W. Townsend, D. Skalecki, K. Kompella, and T. D. Nadeau, “Protocol extensions for support of Diffserv-aware MPLS traffic engineering”, RFC 4124, June 2005.
  • [10] K. Lee, “Mod`ele global pour la qualité de service dans les réseaux de FAI: intégration de DiffServ et de l’ingénierie de trafic basée sur MPLS”, Ph.D. thesis, Ecole Centrale de Lille, France, 2006.
  • [11] Y. Lee, Y. Seok, Y. Choi, and C. Kim, “A constrained multipath traffic engineering scheme for MPLS networks”, in Proc. IEEE ICC’2002 Conf., New York, USA, 2002.
  • [12] A. Elwalid, C. Jin, S. Low, and I. Widjaja, “MATE: MPLS adaptive traffic engineering”, in Proc. Infocom’2001 Conf., Anchorage, USA, 2001, pp. 1300–1309.
  • [13] J. Song, S. Kim, and M. Lee, “Dynamic load distribution in MPLS networks”, in Proceedings of ICOIN 2003, Lecture Notes in Computer Science, vol. 2662. Heidelberg: Springer, 2003, pp. 989–999.
  • [14] K. Lee, A. Toguyéni, and A. Rahmani, “Hybrid multipath routing algorithms for load balancing in MPLS based IP network”, in Proc. AINA’2006 Conf., Vienna, Austria, 2006, pp. 165–170.
  • [15] N. Srihari and Z. Zhi-Li, “On selection of paths for multipath routing”, in Proc. IWQoS’01 Conf., Karlsruhe, Germany, 2001.
  • [16] K. Lee, A. Toguyéni, and A. Rahmani, “Periodic multi-step routing algorithm for DS-TE: PEMS”, in Proceedings of the CAiSE07 Work-shops and Doctoral Consortium, Lecture Series on Computer and Computational Sciences, vol. 2. Berlin/Heidelberg: Springer, 2006, pp. 1–4.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT8-0016-0001
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