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Slot allocation model and data burst scheduling in downlink WiMAX technology

Abstract

The article proposes a mathematical model of slots distribution and data packets scheduling in the communication downlink channel IEEE 802.16. Suggested model aims at the formation of one packet of data downlink channel for each user’s station, enabling to minimize the number of office messages transmitted over used frequency communication channel. Dependence of the number of slots forming a single data packet on the speed of user’s station transmission and the type of modulator circuit and coding is considered.

About the Author

S. .. Garkusha
Харьковский национальный университет радиоэлектроники
Russian Federation


References

1. Andrews J.G., Ghosh A., Muhamed R. Fundamentals of WiMAX Understanding Broadband Wireless Networking. Prentice Hall Communications Engineering and Emerging Technologies Series, 2007. 449 р.

2. Гаркуша С.В. Разработка и анализ масштабируемой модели распределения подканалов в сети стандарта IEEE 802.16 // Збірник наукових праць Харківського університету повітряних сил. 2012. Вип. 4(33). С. 68-74.

3. Shabani A.H., Beg M.T., Khade A.A.-H. Survey of Down Link Data Allocation Algorithms in IEEE 802.16 WiMAX // International Journal of Distributed and Parallel Systems. 2012. V. 55, № 6. Р. 197-207.

4. Гепко И.А., Олейник В.Ф., Чайка Ю.Д., Бондаренко А.В. Современные беспроводные сети: состояние и перспективы развития. К.: «ЕКМО», 2009. 672 с.

5. Niyato D., Hossain E. Adaptive fair subcarrier/rate allocation in multirate OFDMA networks: Radio link level queuing performance analysis // IEEE Transactions on Vehicular Technology. 2006. V. 55, № 6. P. 1897-1907.

6. Letaief K., Zhang Y. Dynamic multiuser resource allocation and adaptation for wireless systems // IEEE Wireless Communications Magazine. 2006. V. 13, № 4. P. 38-47.

7. Ergen M., Coleri S., Varaiya P. QoS aware adaptive resource allocation techniques for fair scheduling in OFDMA based broadband wireless access systems // IEEE Transactions on Broadcasting. 2003. V. 49, № 4. P. 362-370.

8. Jang J., Lee K. Transmit power adaptation for multiuser OFDM systems // IEEE Journal on Selected Areas in Communications. 2003. V. 21, № 2. P. 171-178.

9. Rhee W., Cioffi J. Increase in capacity of multiuser OFDM system using dynamic subchannel allocation // Proceeding of IEEE Vehicular Technology Conference (VTC 2000). 2000. V. 2. P. 1085-1089.

10. Cai J., Shen X., Mark J. Downlink resource management for packet transmission in OFDM wireless communication systems // IEEE Transactions on Wireless Communications. 2005. V. 4, № 4. P. 1688-1703.

11. Seong K., Yu D., Kim Y., Cioffi J. Optimal resource allocation via geometric programming for OFDM broadcast and multiple access channels // Proceeding of IEEE Global Telecommunications Conference (GLOBECOM ’06). 2006. P. 1-5.

12. Mehrjoo M., Awad M.K., Shen X.S. Resource Allocation in OFDM-Based WiMAX // CRC Press, Wireless Networks and Mobile Communications: WiMAX network planning and optimization. 2009. P. 113-131.

13. Zhang Y., Letaief K. Multiuser adaptive subcarrier-and-bit allocation with adaptive cell selection for OFDM systems // IEEE Transaction on Wireless Communications. 2004. V. 3, № 5. P. 1566-1575.

14. Гаркуша С.В. Разработка и анализ модели распределения подканалов в сети стандарта IEEE 802.16 // Вісник національного університету «Львівська політехніка»: Радіоелектроніка та телекомунікації. 2012. № 738. С. 177-185.

15. Ohseki T., Morita M., Inoue T. Burst construction and packet mapping scheme for OFDMA downlinks in IEEE 802.16 systems // IEEE Global Telecommunications Conference (GLOBECOM). 2007. P. 4307-4311.

16. Lodi A., Martello S., Monaci M. Two-dimensional packing problems: A survey // European Journal Operational Research. 2002. V. 141. Р. 242-252.

17. Ben-Shimol Y., Kitroser I., Dinitz Y. Two-dimensional mapping for wireless OFDMA systems // IEEE Transactions on Broadcasting. 2006. V. 52, № 3. P. 388-396.

18. Jin X., Zhou J., Hu J., Shi J., Sun Y., Dutkiewicz E. An Efficient Downlink Data Mapping Algorithm for IEEE802.16e OFDMA Systems // IEEE Global Telecommunications Conference (GLOBECOM). 2008. P. 5233-5237.

19. Sheu S.T., Tsai M.H., Tsai T.-Y., Tsai Y.-H. Condensed Downlink MAP Structures for IEEE 802.16e Wireless Metropolitan Area Networks (MANs) // Vehicular Technology Conference. 2010. P. 237-244.

20. Kim J.Y., Cho D.-H. Piggybacking Scheme of MAP IE for Minimizing MAC Overhead in the IEEE 802.16e OFDMA Systems // Vehicular Technology Conference. 2007. P. 284-288.

21. IEEE Standard for Local and Metropolitan Area Networks: Part 16: Air Interface for Broadband Wireless Access Systems, IEEE Std 802.16-2009, 2009. 2094 p.

22. Fundamentals of WiMAX: A Technology Primer. Telesystem Innovations Inc, 2010. 35 р.

23. So-In C., Jain R., Tamimi A.-K. Capacity Evaluation for IEEE 802.16e Mobile WiMAX // Journal of Computer Systems, Networks, and Communications. 2010. P. 1-12.

24. Ермолаев В.Т. Флаксман А.Г. Теоретические основы обработки сигналов в системах мобильной радиосвязи. Нижний Новгород: НГУ им. И.Н. Лобачевского, 2010. 107 с.


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Garkusha S... Slot allocation model and data burst scheduling in downlink WiMAX technology. The Herald of the Siberian State University of Telecommunications and Information Science. 2014;(2):3-18. (In Russ.)

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ISSN 1998-6920 (Print)