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Bidirectional and RO Methods for Analysis of Stream-Intensive Applications over Mobile IP Network

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
PL
Dwukierunkowa i optymalizowana metoda analizy aplikacji o zwiększonym strumieniu informacji w sieciach mobilnych
Języki publikacji
EN
Abstrakty
EN
These Applications such as voice over IP present many challenges to the design of mobile networks. The mobile networks are constantly changing and the latest devices like smart phones, mobile enabled laptops such as Windows Mobile and the Windows Phone are truly able to delivering on any mobile broadband. Therefore, the Internet service providers must provide enhanced routing methods for delivering a streamintensive traffic to the customers. This paper focuses on performance evaluation of mobile IPv6 routing methods. This evaluation is based on end-toend delay, packet delay variation, and IPv6 traffic dropped.
PL
Mobilne sieci ulegają stałym zmianom i nowoczesne urządzenia mobilne jak smarfony czy tablety są w stanie dopasować się do tych zmian. Dlatego zarządzający serwisem Internetowym powinien wprowadzać ulepszone metody dostarczania strumienia informacji. W artykule analizowano możliwości ulepszenia systemu mobilnego IPv6.
Rocznik
Strony
210--213
Opis fizyczny
Bibliogr. 23 poz., schem., tab., wykr
Twórcy
autor
  • Faculty of Computer Science and Information Systems, Universiti Teknologi Malaysia, 81310 Skudai, Johor, Malaysia, reza.malekian@ieee.org
Bibliografia
  • [1] Perkins C., RFC3344: IP mobility support for IPv4, Internet engineering task force, August 2002, http://www.ietf.org/rfc/rfc3344.txt
  • [2] Perkins C., Johnson D, Arkko J., RFC6275Mobility support in IPv6, Internet engineering task force, July 2011, http://www.ietf.org/rfc/rfc6275.txt
  • [3] Samjani A., Mobile Internet protocol, IEEE journal of potentials, IEEE, 20(2001), no 1, 16-18
  • [4] Narten T., Nordmark E., Simpson W.,Soliman H., RFC4861: Neighbor discovery for IP version 6, Internet engineering task force, September 2007, http://www.ietf.org/rfc/rfc4861.txt
  • [5] Iapichino G., Bonnet C., IPv6 mobility and ad hoc Network mobility, overview report Inst. Eurocom Department. Mobile Com, Sophia Antipolis, France (2008), RR-8-217
  • [6] Fenner B., RFC4727:Experimental values in IPv4, IPv6, ICMP, UDP, and TCP headers, Internet engineering task force, November 2006, http://tools.ietf.org/html/rfc4727
  • [7] Singh S, Bhatia A, DHCPv6 based IPv6 auto-configuration mechanism for subrordinate Manet, Proceedings of the IEEE Asia-pacific conference on computing, Yilan, Taiwan (2008), 237-242
  • [8] Bi Y., Song M., Song J., Seamless mobility using mobile IPv6, proceedings of the mobile technology and application (2005), 1-8
  • [9] Le D., Chang J., Tunneling-based route optimization for mobile IPv6, Proceedings of the International conference on wireless communications, networking and information security, Beijing, China (2010), 22-27
  • [10] Wu C.H., Cheng A.T., Lee S.T., Ho J.M., Lee D.T., Bidirectional route optimization in mobile IP over wireless LAN, Proceedings of the vehicular technology (2002), 1168-1172
  • [11] Gao Q., Acampora A., A virtual home agent based route optimization for mobile IP, proceedings of the IEEE conference on wireless communications and networking, Chicago, USA (2000), 592-596
  • [12] Hsu W.H., Shieh Y.P., Yeh S.C., DiffServ-based bandwidth constrained anycast routing in a mobile IPv6 network, International journal of communication systems, 24(2011), no 2, 139-152
  • [13] Le D., Guo D., Wu B., Parr Gerard, Mobile IPv6 in WLAN mobile networks and its implementation, Proceedings of the international conference on personal, indoor and mobile radio communications, Beijing, China (2003), 1430-1434
  • [14] Le D., Fu X., Hogrefe D., End-to-end tunneling extension to mobile IPv6, Proceedings of the IEEE consumer communication and networking conference, Las Vegas, USA (2007), 120-126
  • [15] Taha S., Shen X., Annonymous home binding update scheme for mobile IPv6 wireless networking, Proceedings of IEEE global communications, Houston, USA (2011), 52-57
  • [16] Chen H., Trajkovic L., Simulation of route optimization in mobile IP, Proceedings of workshop on wireless local network, Tamoa, Florida (2002), 63-65
  • [17] OPNET technologies Inc., OPNET Modeler Accelerating Networks R&D, www.opnet.com
  • [18] Malekian R., Abdullah H.A., Saeed R.A, A cross- layer scheme for resource reservation based on multi-protocol label switching over mobile IP version 6, International journal of the physical science, 6(2011), no 11, 2710-2717
  • [19] Malekian R., Abdullah A.H., A mathematical model to determine the maximum end-to-end delay bound on label switched path for real-time applications over mobile IPv, International journal of the physical science, 6(2011), no 12, 2958-2964 Malekia
  • [20] Samolej S., Szmuc T., HTCPN-based analysis of priority Internet requests scheduling, Preglad Elektrotechniczy, 10(2010), nr 9, 174-178
  • [21] Perez-Costa X., Hartenstein H., A simulation study on the performance of mobile IPv6 in a WLAN-based cellular network. Elsevier Computer network Journal, special issue on the new Internet architecture, 40 (2002), no 1, 1-10
  • [22] Perez-Costa X., Torrent-Moreno M., Hartenstein H., A simulation study on the performance of hierarchical mobile IPv6, Proceedings of the international teletraffic congress, Berlin, Germany, (2003), 1-10
  • [23] Prez-Costa X., Torrent-Moreno M., Hartenstein H., A performance comparision od mobile IPv6, hierarchical mobile IPv6, fast handovers for mobile IPv6 and their combination, Sigmobile mobile computing and communications review, 7 (2003), no4, 1-15
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOH-0063-0020
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