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Analysis of Power Saving Class II Traffic in IEEE 802.16E with Multiple Sleep State and Balking

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The battery life of Mobile Stations in IEEE 802.16e can be extended substantially by applying the sleep mode mechanism. This paper studies an efficient method to analyze the performance of the power saving class type II for delay sensitive traffic in multiple sleep state. The incoming data frames may join or balk the buffer due to impatience with some probability. We present an M/M/1/N queueing model with balking and multiple vacations in order to exhibit the self-similar property of IEEE 802.16e. We develop a cost function to determine the optimal service rate that minimizes the total expected cost. Various performance indices such as the average number of data frames in the system, the mean waiting time of the data frame in the system, the the average balking rate due to impatience, etc. have been presented. Numerical results are provided to show the influence of various parameters on the behavior of the system. The proposed model provides a tradeoff between the average abandon rate and the power consumption.
Rocznik
Strony
53--66
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
autor
  • School of Computer Application, KIIT University, Bhubaneswar - 751024, India
autor
  • School of Computer Application, KIIT University, Bhubaneswar - 751024, India
Bibliografia
  • [1] Baek S., Choi B.D., Performance of an efficient sleep mode operation for IEEE 802.16m, Journal of Industrial and Management Optimization, 7, 3, 2011, 623639.
  • [2] Chen C.Y., Hsu C.H., Feng K.T., Performance analysis and comparison of sleep mode operation for IEEE 802.16m advanced broadband wireless networks, Proceedings of the IEEE 21st International Symposium on Personal Indoor and Mobile Radio Communications, 2010, 1425-1430.
  • [3] Han K., Choi S., Performance Analysis of Sleep Mode Operation in IEEE 802.16e Mobile BroadBand Wireless Access Systems, The 12th Asia-Pacific Conference on Communications, 2006, 1141-1145.
  • [4] Hwang E., Kim K.J., Son J.J., Choi B.D., The power saving mechanism with binary exponential traffic indications in the IEEE 802.16e/m, Queueing Systems, 62, 3, 2009, 197-227.
  • [5] Hwang E., Kim K.J., Son J.J., Choi B.D., The power-saving mechanism with periodic traffic indications in the IEEE 802.16e/m, IEEE Transactions on Vehicular Technology, 59, 1, 2010, 319-334.
  • [6] IEEE 802.16 Working Group, IEEE Standard for Local and Metropolitan Area Networks. Part 16: Air Interface for Fixed and Mobile Broadband Wireless Access Systems. Amendment 3: Management Plane Procedures and Services, IEEE Standard 802, 2006.
  • [7] Jang J., Han K., Choi S., Adaptive power saving strategies for IEEE 802.16 e mobile broadband wireless access, In Communications, APCC’06. Asia-Pacific Conference, 2006, 1-5.
  • [8] Javed U., Suchara M., He J., Rexford J., Multipath protocol for delay-sensitive traffic, In Communication Systems and Networks and Workshops, COMSNETS, 2009, 1-8.
  • [9] Jin S., Yue W., Performance analysis and evaluation for power saving class type III in IEEE 802.16e network, Journal of Industrial and Management Optimization, 6, 3, 2010, 691-708.
  • [10] Jin S., Chen X., Qiao D., Choi S., Adaptive sleep mode management in IEEE 802.16m wireless metropolitan area networks, Computer Networks, 55, 16, 2011, 3774-3783.
  • [11] Jones C.E., Sivalingam K.M., Agrawal P., Chen J.C., A survey of energy efficient network protocols for wireless networks, International Journal of wireless networks, 7, 4, 2001, 343-358.
  • [12] Lee J., Cho D., An optimal power-saving class II for VoIP traffic and its performance evaluations in IEEE 802.16 e, Computer Communications, 31, 14, 2008, 3204-3208.
  • [13] Lee K., Mun Y., Enhanced power saving mechanism for Type I and Type II power saving classes in IEEE 802.16e, IEICE Transactions on Communications, E94-B, 9, 2011, 2642-2645.
  • [14] Rardin R.L., Optimization in Operations Research, Prentice Hall, 1999.
  • [15] Seo J.B., Lee S.Q., Park N.H., Lee H.W., Cho C.H., Performance Analysis of Sleep Mode Operation in IEEE 802.16e, Proc. IEEE VTC, 2, 2004, 1169-1173.
  • [16] Wongthavarawat K., Ganz A., Packet scheduling for QoS support in IEEE 802.16 broadband wireless access systems, International Journal of Communication Systems, 16, 1, 2003, 81-96.
  • [17] Yue D., Zhang Y., Yue W., Optimal performance analysis of an M/M/1/N queue system with balking, reneging and server vacation, International Journal of Pure and Applied Mathematics, 28, 1, 2008, 101-115.
  • [18] Zhang Y., Performance modeling of energy management mechanism in IEEE 802.16e mobile WiMAX, Wireless Communications and Networking Conference, 2007, 3205-3209.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a0d85b05-88da-4fcb-a251-c3d4d2a1941f
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