Presentation 2008-07-18
Performance Analysis of Sleep Mode in the IEEE 802.16e Based on a Discrete-Time Queueing Model
Zhanqiang HUO, Wuyi YUE, Naishuo TIAN, Shunfu JIN,
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Abstract(in English) Power saving is one of the most important issues in mobile wireless broadband access system. The IEEE 802.16e standard proposes an energy saving mechanism that named "sleep mode" for conserving the power of the mobile stations. To model the operating mechanism of the sleep mode for downlink traffic in the type I power saving class, a discrete-time Geom/G/1 queueing model with a close-down time and multiple vacations is built. Using an embedded Markov chain method and Little's law, we analyze the queueing model and get the performance measures of the energy saving rate and the mean packet delay time for the sleep mode in the IEEE 802.16e. Finally, numerical results are given to demonstrate the dependency relationships between the system performance measures and the system parameters and a cost model is developed to determine the optimum length of the close-down time.
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Keyword(in English) IEEE 802.16e / Sleep Mode / Performance Analysis / Energy Saving Rate / Close-Down
Paper # NS2008-39
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Committee NS
Conference Date 2008/7/10(1days)
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Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Performance Analysis of Sleep Mode in the IEEE 802.16e Based on a Discrete-Time Queueing Model
Sub Title (in English)
Keyword(1) IEEE 802.16e
Keyword(2) Sleep Mode
Keyword(3) Performance Analysis
Keyword(4) Energy Saving Rate
Keyword(5) Close-Down
1st Author's Name Zhanqiang HUO
1st Author's Affiliation College of Information Science and Engineering Yanshan University()
2nd Author's Name Wuyi YUE
2nd Author's Affiliation Department of Intelligence and Informatics, Konan University
3rd Author's Name Naishuo TIAN
3rd Author's Affiliation College of Science Yanshan University
4th Author's Name Shunfu JIN
4th Author's Affiliation College of Information Science and Engineering Yanshan University
Date 2008-07-18
Paper # NS2008-39
Volume (vol) vol.108
Number (no) 134
Page pp.pp.-
#Pages 6
Date of Issue