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Fully adaptive CAC schemes for multimedia traffic in wireless mobile networks

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Warianty tytułu
PL
W pełni adaptacyjne schematy sterowania przyjmowaniem zgłoszeń dla ruchu multimedialnego w bezprzewodowych ruchomych sieciach
Języki publikacji
EN
Abstrakty
EN
We introduce adaptive Cali Admission Control (CAC) algorithms for micro- and pico-cell wireless multimedia mobile networks. Our approach allows for an arbitrary topology of network. Additionally, we incorporate in our CAC algorithm the required bandwidth, reservation with ąuality of service and classes of services. The new QoS parameters, such as Movement Change Ratio, Reserved Bandwidth in Neighbouring Cells and Possessed Bandwidth in Neighbouring Cells arę derived, allowing for proper tuning of the CAC algorithm. Simulations illustrate the effectiveness of the given algorithms.
PL
W pracy wprowadzono algorytmy do adaptacyjnego sterowania przyjmowania zgłoszeń (CAC) dla bezprzewodowych, multimedialnych sieci radiokomunikacji ruchomej. Dostarczają one wymaganego pasma transmisji, jak również rezerwują je zgodnie, z parametrami jakości usług (QoS), W pracy wprowadzono nowe parametry QoS, takie jak Współczynnik Zmiany Ruchu, Rezerwowane Pasmo Transmisji w Komórkach Sąsiednich, Posiadane Pasmo Transmisji w Komórkach Sąsiednich.
Czasopismo
Rocznik
Strony
149--164
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
autor
Bibliografia
  • 1. Akyildiz I. F., Ho J. S. M., Lin Y.-B.: Movement-Based Location Update and Selective Paging for PCS Networks. IEEE/ACM Transactions on Networking, Vol. 4, No. 4, 1996, pp. 629-638.
  • 2. Akyildiz I. F., Ho J. S. M.: On Location Management for Personal Communication Networks. IEEE Communications Magazine, Vol. 34, No. 9,1996, pp. 138-145.
  • 3. Akyildiz I. F., M cNair J., Ho J. S. M., Uzunalioglu H., W ang W.: Mobility Management in Next Generation Wireless Systems. Proc. IEEE, No. 87, Aug. 1999, pp. 1347-1384.
  • 4. Cox D. C., Reudink D. O.: Increasing Channel Occupancy in Large-Scale Mobile Radio Systems: Dynamic Channel Reassignment. IEEE Transactions on Communications, Vol. COM -21, No. 11, 1973, pp. 1303-1306.
  • 5. Everitt D., Manfield D.: Performance Analysis of Cellular Communication Systems with Dynamic Channel Assignment. IEEE Journal on Selected Areas in Commun., Vol. 7, No. 9,1989, pp. 1172-1178.
  • 6. Haung Y.-R., Ho J.-M.: Distributed Call Admission for a Heterogeneous PCS Network. IEEE Transactions on Computers, Vol. C-51, No. 12, 2002, pp. 1400-1409.
  • 7. Jabbari B., Colombo G., Nakajima A., Kulkarni J.: Network Issues for Wireless Communications. IEEE Communications Magazine, Vol. 33, No. 1, 1995, pp. 88-99.
  • 8. Katzela I., Naghshineh M.: Channel Assignment Schemes for Cellular Mobile Telecommunication Systems: A Comprehensive Survey. IEEE Personal Communications, June 1996, pp. 10-31.
  • 9. Levine D. A., Akyildiz I. F., Naghshineh M.: The Shadow Cluster Concept for Resource Allocation and Call Admission in ATM -Based Wireless Networks, in: MOBICOM'95 Proceedings of the First Annual International Conference on Mobile Computing and Networking, ACM 1995, New York, N.Y., pp. 142-150.
  • 10. Levine D. A., Akyildiz I. F., Naghshineh M.: A Resource Estimation and Call Admission Algorithm for Wireless Multimedia Networks Using the Shadow Cluster Concept. IEEE/ACM Transactions Networking, Vol. 5, 1997, pp. 1 -1 2 .
  • 11. Naghshineh M., Schwartz M.: Distributed Call Admission Control in Mobile/Wireless Networks. IEEE Journal on Selected Areas in Communications, Vol. 14, No. 4, 1996, pp. 711-717.
  • 12. Naja R., Tohme S.: Adaptive QoS and Handover Issues in W ireless M ultim edia Networks Using a Dynamic Adaptive Architecture: DYNAA. in: C.G. Omidyar (Ed.): Mobile and Wireless Communications, Kluwer Academic Publishers, Norwell 2003, pp. 133-140.
  • 13. Obaidat M. S., Ahmed C. B., Boudriga N.: A Prioritized Distributed Control Scheme for Call Admission Control, in: M. S. Obaidat, F. Davoli (Eds.), Proceedings of 2001 International Symposium on Performance Evaluation of Computer and Telecommunications, Soc. Modeling and Simulation Int., San Diego 2001, pp. 399-405.
  • 14. Oh S.-H., Tcha D.-W .; Prioritized Channel Assignment in a Cellular Radio Network. IEEE Transactions on Communications, Vol. COM -40, No. 7,1992, pp. 1259-1269.
  • 15. Oliveira C., Kim J. B., Suda T.: An Adaptive Bandwidth Reservation Scheme for High-Speed Multimedia Wireless Networks. IEEE Journal on Selected Areas in Communications, Vol. 16, No. 8, 1998, pp. 858-874.
  • 16. Ortigoza-Guerrero L., Aghvami A. H.: Resource Allocation in Hierarchical Cellular Systems. Artech House, Inc., Norwood 2000.
  • 17. Pabgett J. E., Gunther C. G., Hattori T.: Overview of Wireless Personal Communications. IEEE Communications Magazine, Vol. 33, No. 1, 1995, pp. 28-41.
  • 18. Sarnecki J., Vinodrai C., Javed A., O ’Kelly P., Dick K.: Microcell Design Principles. IEEE Communications Magazine, Vol. 31, No. 4, 1993, pp. 76-82.
  • 19. Tekinay S., Jabbari B.: Handover and Channel Assignment in Mobile Cellular Networks. IEEE Communications Magazine, Vol. 29, No. 11, 1991, pp. 42-46.
  • 20. Tekinay S., Jabbari B.: A Measurement-Based Prioritization Scheme for Handover in Mobile Cellular Networks. IEEE Journal on Selected Areas in Communications, Vol. 10, No. 8,1992, pp. 1343-1350.
  • 21. Yang W.-B., Geraniotis E.: Admission Policies for Integrated Voice and Data Traffic in CDMA Packet Radio Networks. IEEE Journal on Selected Areas in Communications, Vol. 12, No. 4, 1994, pp. 654-664.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ3-0003-0065
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