Usability and Evaluation of a Deployed 4G Network Prototype

  • Cuevas Antonio (Departmento de Ingenieria Telematica, Universidad Carlos III de Madrid, Spain) ;
  • Serrano Pablo (Departmento de Ingenieria Telematica, Universidad Carlos III de Madrid, Spain) ;
  • Moreno Jose I. (Departmento de Ingenieria Telematica, Universidad Carlos III de Madrid, Spain) ;
  • Bernardos Carlos J. (Departmento de Ingenieria Telematica, Universidad Carlos III de Madrid, Spain) ;
  • Jahnert Jurgen (Rechenzentrum Universitat Stuttgart, Germany) ;
  • Aguiar Rui L. (Instituto de Telecommunicacoes/Universidade de Aveiro, Aveiro, Portugal) ;
  • Marques Victor (Portugal Telecom Inovacao, Aveiro, Portugal)
  • 발행 : 2005.06.01

초록

This article presents a field evaluation of an IP-based architecture for heterogeneous environments that has been developed under the aegis of the Moby Dick project, covering UMTS-like (universal mobile telecommunications system) TD-CDMA (time division-code division multiple access) wireless access technology, wireless and wired LANs. The architecture treats all transmission capabilities as basic physical and data-link layers, and replaces all higher-level tasks by IP-based strategies. The Moby Dick architecture incorporates mobile IPv6, fast handovers, AAA-control (authentication, authorisation, accounting), charging and quality of service (QoS) in an integrated framework. The architecture further allows for optimised control on the radio link layer resources. It has been implemented and tested by expert users, and evaluated by real users on field trials with multiple services available.

키워드

참고문헌

  1. 3GPP Technical Specification TS 23.002, v5.0.0: Network Architecture (Release 5). Oct. 2000
  2. MIND: Mobile IP-based Network Developments, IST project, http://www.mind-project.org
  3. NOMAD: Integrated Networks for Seamless and Transparent Service Dis­covery, IST project, http://www.ist-nomad.net
  4. Moby Dick: Mobility and Differentiated Services in a Future IP Network, IST Project, http://www.ist-mobydick.org
  5. D. Yi and K. H. Yeung, 'Challenges in the migration to 4G mobile sys­tems,' IEEE Commun. Mag., Dec. 2003
  6. E. Garcia et al., Deliverable D6.4 IST-2000-28584 MIND, MIND Trial Final Report, Nov. 2002, available in [2]
  7. OverDRiVE: Spectrum Efficient Uni- and Multicast Services over Dy­namic Multi-Radio Networks in Vehicular Environments, IST Project, http://www.ist-overdrive.org
  8. LONG: Laboratories over Next Generation Networks, IST Project, http://long.ccaba.upc.es
  9. TEQUILA: Traffic Engineering for Quality of Service in the Internet, at Large Scale, IST Project, http://www.ist-tequila.org
  10. WINE-GLASS: Wireless IP NEtwork as a Generic platform for Location Aware Service Support, IST Project, http://wineglass.tilab.com
  11. Cambridge Open Mobile System (COMS) project, http://www.cl.cam.ac.uk/Research/SRG/netos/coms
  12. D. B. Johnson, C. E. Perkins, and J. Arkko, 'Mobility support in IPv6,' IETF RFC 3775, June 2004
  13. S. Blake et al., 'An architecture for differentiated services,' IETF RFC 2475, Dec. 1998
  14. C. de Laat et al., 'Generic AAA architecture,' IETF RFC 2903, Aug. 2000
  15. GEANT website, http://www.geant.net
  16. Host AP driver, http://hostap.epitest.fi
  17. Wireless3G4free, http://www.wireless3g4free.com
  18. Rajeev Koodli, 'Fast handovers for mobile IPv6,' draft-ietf-mipshop-fast­mipv6-03.txt, Internet Draft, work in progress, Oct. 2004
  19. Moby Dick Deliverable D0103 'Moby Dick consolidated system integra­tion plan', June 2003, available in [4]
  20. Mobile IPv6 for Linux (MIPL), http://www.mobile-ipv6.org
  21. C. J. Bernardos et al., 'Mobile networks experimental evaluation of a han­dover optimization solution for multimedia applications in a mobile IPv6 network,' European Trans. Telecommun., 2005, not yet published, avail­able at http://www3.interscience.wiley.com/cgi-bin/jissue/109658920
  22. P. Calhoun et al., 'Diameter base protocol, IETF RFC 3588, Sept. 2003
  23. F. Le et al., 'Diameter mobile IPv6 application,' draft-le-aaa-diameter­mobileipv6-04.txt Iinternet Draft, Nov. 2004
  24. P. Kurtansky et al., 'Extensions of AAA for future IP networks,' in Proc. WCNC 2004, Atlanta, USA, 2004
  25. J. Bournelle et al., 'Adaptation et implementation de diameter/AAA pour mobile IPv6,' in Proc. DNAC 2002, Paris, France, Dec. 2002
  26. V. Marques et al., 'An IP-based QoS architecture for 4G operator scenar­ios,' IEEE Wireless Commun., June 2003
  27. D. Durham, 'The COPS (Common Open Policy Service) protocol,' IETF RFC 2748, Jan. 2000
  28. A. Cuevas et al., 'Mechanisms for AAA and QoS interaction,' in Proc. ASWN 2003, Berne, Switzerland, 2003
  29. J. Loughney et al., 'Authentication, authorization, and accounting require­ments for the session initiation protocol (SIP)' IETF RFC 3702, Feb. 2004
  30. Daidalos: Designing Advanced network Interfaces for the Delivery and Administration of Location independent, Optimised personal Services, IST Project, http://www.ist-daidalos.org
  31. J. Kempf et al., 'Requirements and functional architecture for an IP Host alerting protocol', IETF RFC 3154, Aug. 2001
  32. M. Liebsch, 'Paging concept for IP based networks,' Internet Draft, Sept. 2001
  33. M. Liebsch, 'Architecture and protocol framework for dormant mode host alerting,' Internet Draft, Sept. 2002
  34. Pablo Serrano et al., 'Medida y analisis del trafico multimedia en redes moviles de cuarta generacion,' in Proc. Telecom 1+D 2004, Madrid, 2004
  35. M. Liebsch et al., 'Candidate access router discovery', draft-ietf­seamoby-card-protocol-08.txt, work-in-progress, Sept. 2004