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Performance Analysis of Multi-Parametric Call Admission Control Strategies in Un-Buffered Multi-Service Cellular Wireless Networks
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Wireless Sensor Network·Volume 02 (2010)·Pages 218–226·Published 12 April 2010·DOI10.4236/wsn.2010.23029
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Abstract
In this paper model of integrated voice/data cellular wireless networks (CWN) are investigated. The unified approximate approach to calculate the desired Quality of Service (QoS) metrics in an isolated cell of such networks under two multi-parametric call admission control (CAC) strategies is developed. One of them is based on the guard channels scheme while the second is based on a threshold scheme. Results of the numerical experiments are given and a comparison of QoS metrics under different CAC strategies is carried out.
KeywordsCellular NetworksCall Admission ControlQuality of ServiceCalculation Algorithm
- S. Tekinay and B. Jabbari, “Handover policies and channel assignment strategies in mobile cellular networks,” IEEE Communication Magazine, Vol. 29, No. 11, pp. 42–46, 1991.
- I. Katzela and M. Naghshineh, “Channel assignment sch- emes for cellular mobile telecommunication systems,” IEEE Personal Communications, pp. 10–31, June 1996.
- S. DasBit and S. Mitra, “Challenges of computing in mobile cellular environment—a survey,” Computer Com- munications, Vol. 26, pp. 2090–2105, 2003.
- R. J. Boucherie and M. Mandjes, “Estimation of performance measures for product form cellular mobile communications networks,” Telecommunication Systems, Vol. 10, pp. 321–354, 1998.
- R. J. Boucherie and N. M. Van Dijk, “On a queuing network model for cellular mobile telecommunications networks,” Operation Research, Vol. 48, No. 1, pp. 38–49, 2000.
- W. Li and X. Chao, “Modeling and performance evaluation of cellular mobile networks,” IEEE/ACM Transactions on Networking, Vol. 12, No. 1, pp. 131–145, 2004.
- D. Hong and S. S. Rapoport, “Traffic model and performance analysis of cellular mobile radio telephones systems with prioritized and non-prioritized handoff procedures,” IEEE Transactions on Vehicular Technology, Vol. 35, No. 3, pp. 77–92, 1986.
- G. Haring, R. Marie, R. Puigjaner, and K. Trivedi, “Loss formulas and their application to optimization for cellular networks,” IEEE Transactions on Vehicular Technology, Vol. 50, No. 3, pp. 664–673, 2001.
- B. Gavish and S. Sridhar, “Threshold priority policy for channel assignment in cellular networks,” IEEE Transactions on Computers, Vol. 46, No. 3, pp. 367–370, 1997.
- V. S. Korolyuk and V. V. Korolyuk, “Stochastic model of systems,” Kluwer Academic Publishers, Boston, 1999.
- W. Yue and Y. Matsumoto, “Performance analysis of multi-channel and multi-traffic on wireless communication networks,” Kluwer Academic Publishers, Boston, 2002.
- S. Nanda, “Teletraffic models for urban and suburban microcells: Cell sizes and hand-off rates,” IEEE Transactions on Vehicular Technology, Vol. 42, No. 4, pp. 673– 682, 1993.
- S. E. Ogbonmwan and L. Wei, “Multi-threshold bandwidth reservation scheme of an integrated voice/data wireless network,” Computer Communications, Vol. 29, No. 9, pp. 1504–1515, 2006.
- R. W. Wolff, “Poisson arrivals see time averages,” Operations Research, Vol. 30, No. 2, pp. 223–231, 1992.