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Bandwidth broker extension for optimal resource management

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Bandwidth broker (BB), resource manager of differentiated services domain cannot provide per domain behavior (PDB) attribute information to customers and neighboring domains at the time of service level agreement (SLA) negotiation. Extending BB's functionality to calculate PDB attributes can help it to negotiate SLAs dynamically and efficiently. Using current measurements or historic data about PDB attributes, bandwidth broker can perform off-line analysis to evaluate the range of quality of service (QoS) parameters that its domain can offer. Using these values BB can perform optimal capacity planning of the links and provide better QoS guarantees.
Rocznik
Tom
Strony
77--82
Opis fizyczny
Bibliogr. 19 poz., tab., rys.
Twórcy
autor
  • School of Computer Science and Engineering University of New South Wales Sydney, Australia
autor
  • School of Computer Science and Engineering University of New South Wales Sydney, Australia
Bibliografia
  • [1] U. Fiedler, P. Huang, and B. Plattner, “Towards provisioning DiffServ intranets”, in Lecture Notes in Computer Science, 2001, vol. 2092, pp. 27–43.
  • [2] M. Fine et al., “An architecture for differentiated services”, Internet request for comments RFC2475, IETF, Dec. 1998.
  • [3] J. Heinanen et al., “Assured forwarding PHB group”, Internet request for comments RFC2597, IETF, June 1999.
  • [4] V. Jacobson et al., “An expedited forwarding PHB”, Internet request for comments RFC2598, IETF, June 1999.
  • [5] V. Jacobson et al., “The virtual wire per-domain behavior”, Internet draft, IETF, July 2000.
  • [6] G. Kim, P. Mouchtaris, S. Samtani, R. Talpade, and L. Wong, “QoS provisioning for VoIP in bandwidth broker architecture: a simulation approach”, in Commun. Netw. Distrib. Syst. Model. Simul.Conf. CNDS ’01, Phoenix, USA, Jan. 2001.
  • [7] K. Nichols and B. Carpenter, “Definition of differentiated services per domain behaviors and rules for their specification”, Internet request for comments RFC3086, IETF, Apr. 2001.
  • [8] K. Nichols et al., “A lower effort per-domain behavior for differentiated services”, Internet draft, IETF, June 2002.
  • [9] N. Seddigh et al., “An assured rate per-domain behavior for differentiated services”, Internet draft, IETF, Feb. 2001.
  • [10] Network simulator NS-2, Jan. 2003, http://www.isi.edu/nsnam/ns/
  • [11] S. Sohail and S. Jha, “The survey of bandwidth broker”, Tech. Rep. UNSW CSE TR 0206, School of Computer Science and Engineering, University of New South Wales, Sydney, Australia, May 2002.
  • [12] B. Teitelbaum and P. Chimento, “Qbone bandwidth broker architecture”, Work in Progress, June 2002, http://qbone.ctit.utwente.nl/deliverables/1999/d2/bboutline2.htm
  • [13] B. Teitelbaum and R. Geib, “Internet2 QBone: a test bed for differentiated service”, in INET ’99, Internet Glob. Sum., San Jose, USA, June 1999.
  • [14] “WFQ scheduler for NS-2”, June 2002, http://www.tik.ee.ethz.ch/fiedler/provisioning.html
  • [15] T. Braun, M. Gunter, I. Khalil, R. Balmer, and F. Baumgartner, “Virtual private network and quality of service management implementation”, Tech. Rep. IAM-99-003, CATI, July 1999.
  • [16] T. Braun and I. Khalil, “Edge provisioning and fairness In VPN-DiffServ networks”, in 9th Int. Conf. Comput. Commun. Netw. ICCCN 2000, pp. 424–433.
  • [17] T. Braun and I. Khalil, “A range based SLA and edge driven virtual core provisioning in DiffServ-VPNs”, in 26th Ann. IEEE Conf. Loc. Comp. Netw. LCN’2001, Tampa, USA, 2001.
  • [18] Z. Zhang, Z. Duan, and Y. Hou, “On scalable design of bandwidth brokers”, in IEICE Trans. Commun., E84-B (8), 2001.
  • [19] G. Politis, P. Sampatakos, and I. Venieris, “Design of a multi-layer bandwidth broker architecture”, in Interworking, 2000, pp. 316–325
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0021-0026
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