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CATMISS: context-aware transparent mobility for IMS services
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  • 作者:Victor Sandonis ; Ignacio Soto ; Maria Calderon…
  • 关键词:Context ; awareness ; Transparent mobility ; IMS ; SIP
  • 刊名:Multimedia Tools and Applications
  • 出版年:2015
  • 出版时间:July 2015
  • 年:2015
  • 卷:74
  • 期:13
  • 页码:4789-4816
  • 全文大小:1,438 KB
  • 参考文献:1.3GPP (2011) IP Multimedia Subsystem (IMS) service continuity; Stage 2, TS 23.237 v11.1.0 Release 11. 3rd Generation Partnership Project (3GPP)
    2.3GPP (2012) General Packet Radio Service (GPRS); Service description; Stage 2, TS 23.060, v11.2.0, Release 11. 3rd Generation Partnership Project (3GPP)
    3.3GPP (2012) Architecture enhancements for non-3GPP accesses, TS 23.402 v10.7.0 Release 10. 3rd Generation Partnership Project (3GPP)
    4.3GPP (2012) Access to the 3GPP Evolved Packet Core (EPC) via non-3GPP access networks; Stage 3, TS 24.302 v10.7.0 Release 10. 3rd Generation Partnership Project (3GPP)
    5.3GPP (2013) IP Multimedia Subsystem (IMS); Stage 2, TS 23.228, v12.1.0, Release 12. 3rd Generation Partnership Project (3GPP)
    6.3GPP (2013) IP multimedia call control protocol based on Session Initiation Protocol (SIP) and Session Description Protocol (SDP); Stage 3, TS 24.229, v12.1.0, Release 12. 3rd Generation Partnership Project (3GPP)
    7.Achour A, Haddadou K, Kervella B, Pujolle G (2012) A SIP-SHIM6-based solution providing interdomain service continuity in IMS-based networks. IEEE Commun Mag 50(7):109-19View Article
    8.Arnaud J, Negru D (2012) Mobility-aware P/I-CSCF: a solution for achieving seamless handover in IMS. In IEEE Symposium on Computers and Communications, ISCC 2012, pp 43-8
    9.Chiba T, Yokota H, Dutta A, Chee D, Schulzrinne H (2008) Performance analysis of next generation mobility protocols for IMS/MMD networks. In Wireless Communications and Mobile Computing Conference, IWCMC-8, pp 68-3
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    11.Choong KN, Kesavan VS, Ng SL, Carvalho F, Low ALY, Maciocco C (2007) SIP-based IEEE802.21 media independent handover -a BT Intel collaboration. BT Technol J 25(2):219-30View Article
    12.Doolin K, Pashalidis A, Kassler A, Mota T (2008) Context-aware multimedia services in a pervasive environment: the Daidalos approach. In Proceedings of the 2008 Ambi-Sys workshop on Software Organisation and MonIToring of Ambient Systems, SOMITAS -8
    13.Hasswa A, Hassanein H (2011) SocioSpace: An adaptive service-oriented architecture that integrates smart spaces and social networks through the IP Multimedia Subsystem. In IEEE Symposium on Computers and Communications, ISCC 2011, pp 85-0
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    15.Mahy R, Biggs B, Dean R (2004) The session initiation protocol (SIP) “replaces-header, RFC 3891. Internet Engineering Task Force
    16.Nguyen Huu T, Nguyen Tai H, Tran Ngoc L, Tran Quang T, Do H, Magedanz T (2008) mSCTP-based proxy in support of multimedia session continuity and QoS for IMS-based networks. In Second International Conference on Communications and Electronics, ICCE 2008, pp 162-68
    17.Perkins C (2010) IP mobility support for IPv4, Revised, RFC 5944. Internet Engineering Task Force
    18.Perkins C, Johnson D, Arkko J (2011) Mobility support in IPv6, RFC 6275. Internet Engineering Task Force
    19.Renier T, Larsen K, Castro G, Schwefel H (2007) Mid-session macro-mobility in IMS-based networks. IEEE Veh Technol Mag 2(1):20-7View Article
    20.Rosenberg J (2009) Obtaining and using globally routable user agent URIs (GRUUs) in the Session Initiation Protocol (SIP), RFC 5627. Internet Engineering Task Force
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    22.Sandonis V, Fernandez I, Soto I (2012) SIP-Based Context-Aware Mobility for IPTV IMS Services. In UP-TO-US Workshop, EuroITV Conference 2012 Adjunct Proceedings, pp 271-80
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    28.Vidal I, Garcia-Reinoso J, de la Oliva A, Bikfalvi A, Soto I (2010) Supporting mobility in an IMS-based P2P IPTV service: A proactive context transfer mechanism. Comput Commun 33(14):1736-751View Article
    29.Vidal I, Soto I, Calderon M, Garcia-Reinoso J, Sand
  • 作者单位:Victor Sandonis (1)
    Ignacio Soto (1)
    Maria Calderon (1)
    Ismael Fernandez (1)
    Ivan Vidal (1)

    1. Departamento de Ingeniería Telemática, Universidad Carlos III de Madrid, Avda. de la Universidad, 30, 28911, Leganés, Madrid, Spain
  • 刊物类别:Computer Science
  • 刊物主题:Multimedia Information Systems
    Computer Communication Networks
    Data Structures, Cryptology and Information Theory
    Special Purpose and Application-Based Systems
  • 出版者:Springer Netherlands
  • ISSN:1573-7721
文摘
The IP Multimedia Subsystem (IMS) is considered as the common platform for providing a unified session control on top of various access network technologies for multimedia applications. At the same time, we are witnessing how wireless technologies become an integral part of our daily life, due to an increasing number of mobile multi-interface devices and the proliferation of wireless access networks. In this context the availability of transparent mobility management mechanisms is a key element to enhance user’s quality of experience. On the other hand, context-awareness is a vital ingredient to allow mobile devices to make appropriate and timely mobility decisions. The benefits of using diverse context information (e.g., about the user, the service and the network) to manage mobility are twofold. First, the richer information is available, the more likely an intelligent decision can be taken. Second, it allows the network to assist the terminal to take mobility decisions, even up to the point of automatically initiating a mobility procedure if according to the context and user preferences this improves the user’s quality of experience. In this paper we propose CATMISS, a solution to support context-aware mobility in IMS services. The solution is based on SIP signalling and makes mobility transparent for communication peers of mobile terminals. Two types of mobility are supported: a terminal changing of access network and a multimedia session being transferred from one terminal to another. The paper also describes the implementation of the solution and its deployment in an experimental platform. Experiments in this platform, with IPTV and videoconference services, are used to validate the proposal.

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