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Analytical Modeling of the WCDMA Interface with Packet Scheduling

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents the application of a new analytical model of the full-availability group carrying a mixture of different multi-rate traffic classes with compression property for modeling the WCDMA radio interface with packet scheduling. The proposed model can be directly used for modeling of theWCDMA interface in the UMTS network servicing different traffic classes. The described model can be applied for a validation of the efficiency of the WCDMA interface measured by the blocking probability and the average carried traffic for particular traffic classes.
Słowa kluczowe
Rocznik
Tom
Strony
103--110
Opis fizyczny
Bibliogr. 24 poz., rys.
Twórcy
autor
autor
  • Chair of Communications and Computer Networks, Poznań University of Technology, Polanka st 3/231, 60-965 Poznań, Poland, pzwierz@et.put.poznan.pl
Bibliografia
  • [1] D. Staehle and A. M¨ader, “An analytic approximation of the uplink capacity in a UMTS network with heterogeneous traffic”, in 18th Int. Teletraf. Congr. ITC 18, Berlin, Germany, 2003, pp. 81–91.
  • [2] V. B. Iversen and E. Epifania, “Teletraffic engineering of multi-band W-CDMA systems”, in Network Control and Engineering for Qos, Security and Mobility II. Norwell: Kluwer, 2003, pp. 90–103.
  • [3] V. B. Iversen, V. Benetis, and H. N. Trung, “Evaluation of multiservice CDMA networks with soft blocking”, in ITC 16th Spec. Sem. Perfor. Eval. Mob. Wirel. Syst., Antwerp, Belgium, 2004, pp. 212–216.
  • [4] D. Staehle, “Analytic methods for UMTS radio network planning”. Ph.D. thesis, Bayerische Julius-Maximilians-Universitat Wurzburg, 2004.
  • [5] K. Subramaniam and A. A. Nilsson, “Tier-based analytical model for adaptive call admission control scheme in a UMTS-WCDMA system”, in Proc. Veh. Technol. Conf., Stockolm, Sweden, 2005, vol. 4, pp. 2181–2185.
  • [6] K. Subramaniam and A. A. Nilsson, “An analytical model for adaptive call admission control scheme in a heterogeneous UMTS-WCDMA system”, in Proc. Int. Conf. Commun., Seoul, Korea, 2005, vol. 5, pp. 3334–3338.
  • [7] I. Koo and K. Kim, CDMA Systems Capacity Engineering. Mobile Communications. Boston, London: Artech House, 2005.
  • [8] I. Koo and K. Kim, “Erlang capacity of multi-service multi-access systems with a limited number of channel elements according to separate and common operations”, IEICE Trans. Commun., vol. E89-B, no. 11, pp. 3065–3074, 2006.
  • [9] G. A. Kallos, V. G. Vassilakis, and M. D. Logothetis, “Call blocking probabilities in a W-CDMA cell with fixed number of channels and finite number of traffic sources”, in Proc. 6th Int. Conf. Commun. Syst., Netw. Dig. Sig. Proces., Graz, Austria, 2008 pp. 200–203.
  • [10] V. G. Vassilakis and M. D. Logothetis, “The wireless Engset multirate loss model for the handofftraffic analysis in W-CDMA networks”, in Proc. 19th Int. Symp. Pers., Indoor Mob. Radio Commun., Cannes, France, 2008, pp. 1–6.
  • [11] M. Stasiak, P. Zwierzykowski, J. Wiewiora, and D. Parniewicz,
  • “An approximate model of the WCDMA interface servicing a mixture of multi-rate traffic streams with priorities”, in Computer Performance Engineering, Lecture Notes in Computer Science, vol. 5261. Berlin: Springer, 2008, pp. 168–180.
  • [12] J. Laiho, A. Wacker, and T. Novosad, Radio Network Planning and Optimization for UMTS. 2 ed. Chichester: Wiley, 2006.
  • [13] M. Stasiak, P. Zwierzykowski, and M. Głąbowski, Modelowanie i wymiarowanie ruchomych sieci bezprzewodowych. Warsaw: Wydawnictwa Komunikacji i Łączności, 2009 (in Polish).
  • [14] H. Holma and A. Toskala, WCDMA for UMTS. Radio Access for Third Generation Mobile Communications. Chichester: Wiley, 2000.
  • [15] Broadband Network Teletraffic, Final Report of Action COST 242, J. W. Roberts, V. Mocci, and I. Virtamo, Eds. Commission of the European Communities. Berlin: Springer, 1996.
  • [16] J. S. Kaufman, “Blocking in a shared resource environment”, IEEE Trans. Commun., vol. 29, no. 10, pp. 1474–1481, 1981.
  • [17] J. W. Roberts, “A service system with heterogeneous user requirements – application to multi-service telecommunications systems”, in Proceedings of Performance of Data Communications Systems and Their Applications, G. Pujolle, Ed. Amsterdam: North Holland, 1981, pp. 423–431.
  • [18] M. Głąbowski, “Modelling of state-dependent multi-rate systems carrying BPP traffic”, Ann. Telecommun., vol. 63, no. 7–8, pp. 393–407, 2008.
  • [19] M. Stasiak, J. Wiewiora, and P. Zwierzykowski, “Analytical modelling of the Iub interface in the UMTS network”, in Proc. 6th Int. Conf. Commun. Syst., Netw. Dig. Sig. Proces., Graz, Austria, 2008.
  • [20] M. Stasiak, A. Wiśniewski, and P. Zwierzykowski, “Blocking probability calculation in the uplink direction for cellular systems with WCDMA radio interface”, in Proc. 3rd Polish-German Teletraf. Symp., P. Buchholtz, R. Lehnert, and M. Pioro, Eds., Dresden, Germany, 2004, pp. 65–74.
  • [21] M. Głąbowski, M. Stasiak, A. Wiśniewski, and P. Zwierzykowski, “Uplink blocking probability calculation for cellular systems with WCDMA radio interface, finite source population and differently loaded neighbouring cells”, in Proc. Asia-Pacific Conf. Commun., Perth, Australia, 2005.
  • [22] M. Głąbowski, M. Stasiak, A. Wiśniewski, and P. Zwierzykowski, “Uplink blocking probability calculation for cellular systems with WCDMA radio interface and finite source population”, in Performance Modelling and Analysis of Heterogeneous Networks. Wharton: River Publ., 2009, pp. 301–318.
  • [23] M. Stasiak, A. Wiśniewski, P. Zwierzykowski, and M. Głąbowski, “Blocking probability calculation for cellular systems with WCDMA radio interface servicing PCT1 and PCT2 multirate traffic”, IEICE Trans. Commun., vol. E92-B, no. 4, pp. 1156–1165, 2009.
  • [24] H. Holma and A. Toskala, HSDPA/HSUPA for UMTS: High Speed Radio Access for Mobile Communications. Chichester: Wiley, 2006.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT8-0016-0035
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