Abstract
In mobile networks the traffic fluctuation is unpredictable dueto mobility and varying resource requirements of multimedia applications.Henceit is essential to maintain the traffic within the network capacity to providethe service guarantees to running applications. Thispaper proposes an Admission Control (AC) scheme in a single mobile cellularenvironment supporting real-time and non-real-time application traffic. In thecase of a real-time and non-real-time multimedia applications, eachapplication has its own distinct range of acceptable Quality of Service (QoS)requirements(e.g., packet loss, delay, jitter, etc.). The network provides the service bymaintaining the application specified QoS range. We propose a LinearProgrammingResource Reduction (LP-RR) principle for admission control by maintainingQoSguarantees to existing applications and to increase the percentage ofadmissionto real-time and non-real-time applications. Artificial Neural Networks (ANNs)are used to solve linear programming problem, which facilitates an on-lineadmissioncontrol decision in the practical systems.The simulation results demonstrate that the proposed AC schemeperforms well in terms of admitted applications and maintains lower percentageof rejection to hand-off and new applications of different traffic classes.The suggested principle also shown that it is appropriate for the fairresourceallocation with improved resource utilization.
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References
W.C.Y. Lee, “Smaller Cells for Greater Performance”, IEEE Communication Magazine, Vol. 29, No. 11, pp. 19–23, 1991.
W.B. Yang and E. Geraniotis, “Admission Policies for Integrated Voice and Data Traffic in CDMA Packet Radio Networks”, IEEE J. Select. Areas Commun., Vol. 12, No. 4, pp. 654–664, 1994.
M. Naghshineh and A.S. Acampora, “QoS Provisioning in Microcellular Networks Supporting Multimedia Traffic”, in IEEE INFOCOM'95, Boston, MA, April 1995.
M. Naghshineh and M. Schwartz, “Distributed Call Admission Control in Mobile/Wireless Networks”, IEEE J. Select. Areas Commun., Vol. 14, No. 4, pp. 711–717, 1996.
J. Tajima and K. Imamura, “A Strategy for Flexible Channel Assignment in Mobile Communication Systems”, IEEE Trans. Veh. Technol., Vol. 37, No. 2, pp. 92–103, 1988.
D. Hong and S.S. Rappaport, “Traffic Model and Performance Analysis of Cellular Radio Telephone Systems with Prioritized and Nonprioritized Hand-Off Procedures”, IEEE Trans. Veh. Technol., Vol. VT-35, No. 3, pp. 77–92, 1986.
S.H. Oh and D.W. Tcha, “Prioritized Channel Assignment in a Cellular Radio Network”, IEEE Trans. Communications, Vol. 40, No. 7, pp. 1259–1269, 1992.
S. Tekinay and B. Jabbari, “A Measurement Based Prioritization Scheme for Handover in Mobile Cellular Networks”, IEEE J. Select. Areas Commun., Vol. 10, pp. 1343–1350, 1992.
Ing-Ray Chen and Tao-Hung Hsi, “Performance Analysis of Admission Control Algorithms Based on Reward Optimization for Real-Time Multimedia Servers”, Performance Evaluation, Vol. 33, pp. 89–112, 1998.
D. Levine, I. Akyildiz and M. Naghshineh, “A Resource Estimation and Call Admission Algorithm for Wireless Multimedia Networks Using the Shadow Cluster Concept”, IEEE/ACM Trans. Networking,Vol. 5, No. 1, pp. 1–12, 1997.
D. Ayyagari and Anthony Ephremides, “Admission Control with Priorities: Approaches for Multi-Rate Wireless Systems”, Mobile Networks and Applications, Vol. 4, pp. 209–218, 1999.
G. Ramamurthy and Qiang Ren, “Multi-Class Connection Admission Control Policy for High Speed ATM Switches”, IEEE INFOCOM, pp. 963–972, 1997.
Anup K. Talukdar, B.R. Badrinath and Arup Acharya, “On Accommodating Mobile Hosts in an Integrated Services Packet Networks”, IEEE INFOCOM, pp. 1046–1053, 1997.
Anup K. Talakdar, B.R. Badrinath and A. Acharya, “On Accommodating Mobile Hosts in an Integrated Services Packet Network”, IEEE INFOCOM, pp. 1046–1053, 1997.
A. Cichocki and R. Unbehauen, Neural Networks for Optimization and Signal Processing, John-Wiley and Sons: Stuttgart, 1993.
J. Wang and V. Chankong, “Recurrent Neural Networks for Linear Programming: Analysis and Design Principles”, Computers Operations Research, Vol. 19, No. 3/4, pp. 297–311, 1992.
J.J. Hopfield and D.W. Tank, “Neural Computation of Decisions in Optimization Problems”, Biological Cybernetics, Vol. 52, No. 1, pp. 141–152, 1985.
J. Wang, “Analysis and Design of a Recurrent Neural Network for Linear Programming”, IEEE Trans. on Circuits and Systems-I: Fundamental Theory and Appls., Vol. 40, No. 9, pp. 613–618, 1993.
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Vijay Kumar, B., Venkataram, P. A LP-based Admission Control Using Artificial Neural Networks for Integrated Services in Mobile Networks. Wireless Personal Communications 20, 219–236 (2002). https://doi.org/10.1023/A:1014442827569
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DOI: https://doi.org/10.1023/A:1014442827569