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Journal of Automation and Information Sciences
SJR: 0.238 SNIP: 0.464 CiteScore™: 0.27

ISSN Печать: 1064-2315
ISSN Онлайн: 2163-9337

Выпуски:
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Journal of Automation and Information Sciences

DOI: 10.1615/JAutomatInfScien.v45.i6.20
pages 13-24

Approximate Analysis Method for Multiservice Cellular Networks with the Buffer for Data Calls

Agasi Zarbali ogly Melikov
Institute of Control Systems of National Academy of Sciences of Azerbaijan, Baku
Leonid A. Ponomarenko
International Research and Training Center of Information Technologies and Systems of National Academy of Sciences of Ukraine and Ministry of Education and Science of Ukraine, Kiev, Ukraine
Chesoong Kim
Department of Industrial Engineering/Business Administration Sangji University, Wonju, Rep.of Korea 220-702

Краткое описание

A numerical method for calculating the parameters of quality of service (QoS) metrics in multi-service cellular networks, which allow the formation of bounded or unbounded queues for data calls, is proposed. The access of voice calls is controlled via two-parameter strategy, and access of data calls is determined using one threshold parameter. The decision of access of different types of voice calls is made on the basis of information on the total number of busy channels of the cell, the corresponding decision to call the data is determined by the total length of the queue of the calls of the specified type.

ЛИТЕРАТУРА

  1. Das Bit S., Mitra S. , Challenges of computing in mobile cellular environment — a survey.

  2. Ahmed M.H. , Call admission control in wireless networks: A comprehensive survey.

  3. Ghaderi M., Boutaba R. , Call admission control for voice/data integration in broadband wireless networks.

  4. Melikov A.Z., Ponomarenko L.A., Kim C.S. , Methods for analysis of multi-service wireless cellular communication networks with queues of nonreal time calls. Part I, Cutoff strategy.

  5. Melikov A.Z., Ponomarenko L.A., Kim C.S. , Methods for analysis of multi-service wireless cellular communication networks with queues of nonreal time calls, Part II, Guard channels strategy.

  6. Carvalho G.H.S., Martins V.S., Frances C.R.L., Costa J.C.W.A., Carvalho S.V. , Performance analysis of multi-service wireless network: An approach integrating CAC, scheduling, and buffer management.

  7. Ponomarenko L., Kim C.S., Melikov A. , Performance analysis and optimization of multi-traffic on communication networks, Springer, Heidelberg; Dordrecht; London; New York, 2010.


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