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An architecture for SDP-based bandwidth resource allocation with QoS for SIP in IEEE 802.16 networks

Published: 02 October 2006 Publication History

Abstract

The IEEE 802.16 link-layer offers rich QoS primitives which make it an attractive transport for voice traffic. Yet, its QoS capabilities are disjoint from the application layer protocols, such as SIP. This paper presents a new approach with a demonstrator on merging 802.16 QoS with SIP with bandwidth allocation capabilities based on the Session Description Protocol's Provisional Response Acknowledgement (PRACK) method. It is henceforward suggested, that tying SIP with 802.16 MAC bandwidth management provides an effective means to transport voice traffic over this wireless access technology

References

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S. Blake, D. Black, M. Carlson, E. Davies, Z. Wang, and W. Weiss. RFC2475: An Architecture for Differentiated Services. IETF, 1998.
[2]
R. Braden, Ed., L. Zhang, S. Berson, S. Herzog, and S. Jamin. RFC 2205: Resource ReSerVation Protocol (RSVP) ?version 1 functional specification, Sept. 1997.
[3]
G. Camarillo and P. Kyzivat. RFC 4032: Update to the session initiation protocol (sip) preconditions framework, 2005.
[4]
G. Camarillo, W. Marshall, and J. Rosenberg. RFC3312: Integration of Resource Management and Session Initiation Protocol (SIP). IETF, 2002.
[5]
J. Chen, W. Jiao, and Q. Guo. An integrated qos control architecture for ieee 802. 16 broadband wireless access systems. In Proceedings of the IEEE Globecom 2005 Conference, Saint Louis, MO, USA, 12 2005.
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J. Chen, W. Jiao, and Q. Guo. Providing integrated qos control for ieee 802. 16 broadband wireless access. Dallas, TX, September 2005. 62nd IEEE Vehicular Technology Conference, IEEE.
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R. Hancock, G. Karagiannis, J. Loughney, and S. V. den Bosch. Next steps in signaling (nsis): Framework. RFC 4080, Internet Engineering Task Force, June 2005.
[8]
M. Handley and V. Jacobson. RFC 2327: Sdp: Session description protocol, 1998.
[9]
S. Herzog. RSVP extensions for policy control. RFC 2750, Internet Engineering Task Force, Jan. 2000.
[10]
IEEE-802.16.802.16-2004. Standard for Local and Metropolitan Area Networks. Part 16: Air Interface for Fixed Broadband Wireless Access Systems. IEEE, New York, 2004.
[11]
IEEE-802.16.802.16e-2005 (Amendment to IEEE Std 802.16). IEEE, New York, 2005.
[12]
W. Marshall and I. Ed. Private session initiation protocol (SIP) extensions for media authorization, Jan. 2003.
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K. Nichols, S. Blake, F. Baker, and D. Black. RFC 2474: Definition of the differentiated services eld (ds field) in the ipv4 and ipv6 headers, 1998.
[14]
J. Rosenberg and H. Schulzrinne. Reliability of provisional responses in session initiation protocol (SIP) . RFC 3262, Internet Engineering Task Force, June 2002.
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J. Rosenberg and H. Schulzrinne. RFC 3264: An offer/answer model with the session description protocol (sdp)., 2002.
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J. Rosenberg, H. Schulzrinne, G. Camarillo, A. Johnston, J. Peterson, R. Sparks, M. Handley, and E. Schooler. RFC 3261: Sip: Session initiation protocol, 2002.
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H. Schulzrinne, J. Rosenberg, and J. Lennox. Interaction of call setup and resource reservation protocols in internet telephony. 1999.
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S. Shenker, C. Partridge, and R. Guerin. RFC 2212: Specification of guaranteed quality of service, 1997.
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Z. Wang. Internet QoS. Architectures and Mechansisms for Quality of Service. Morgan Kaufmann, San Francisco, 2001.
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J. Wroclawski. RFC 2210: The use of rsvp with ietf integrated services, 1997.

Cited By

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  • (2008)A distributed resource management scheme for load-balanced QoS provisioning in heterogeneous mobile wireless networksProceedings of the 4th ACM symposium on QoS and security for wireless and mobile networks10.1145/1454586.1454598(63-70)Online publication date: 27-Oct-2008
  • (2008)Towards Dependable wireless networks a QoS constraint resource management scheme in heterogeneous environment2008 4th International Conference on Emerging Technologies10.1109/ICET.2008.4777497(182-186)Online publication date: Oct-2008
  • (2007)QoS negotiation for IPTV service using SIPThe 9th International Conference on Advanced Communication Technology10.1109/ICACT.2007.358515(945-948)Online publication date: Feb-2007

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  1. An architecture for SDP-based bandwidth resource allocation with QoS for SIP in IEEE 802.16 networks

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        cover image ACM Conferences
        Q2SWinet '06: Proceedings of the 2nd ACM international workshop on Quality of service & security for wireless and mobile networks
        October 2006
        146 pages
        ISBN:1595934863
        DOI:10.1145/1163673
        Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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        Publication History

        Published: 02 October 2006

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        Author Tags

        1. IEEE 802.16
        2. QoS
        3. SDP
        4. SIP
        5. SIP proxy
        6. WiMax
        7. resource allocation

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        • (2008)A distributed resource management scheme for load-balanced QoS provisioning in heterogeneous mobile wireless networksProceedings of the 4th ACM symposium on QoS and security for wireless and mobile networks10.1145/1454586.1454598(63-70)Online publication date: 27-Oct-2008
        • (2008)Towards Dependable wireless networks a QoS constraint resource management scheme in heterogeneous environment2008 4th International Conference on Emerging Technologies10.1109/ICET.2008.4777497(182-186)Online publication date: Oct-2008
        • (2007)QoS negotiation for IPTV service using SIPThe 9th International Conference on Advanced Communication Technology10.1109/ICACT.2007.358515(945-948)Online publication date: Feb-2007

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