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The power saving mechanism with binary exponential traffic indications in the IEEE 802.16e/m

机译:IEEE 802.16e / m中具有二进制指数流量指示的节能机制

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摘要

In IEEE 802.16e (air interface standard for MWiMAX) and IEEE 802.16m (evolution of MWiMAX for IMT-Advanced), power saving is one of the important issues for the battery-powered mobile stations (MSs). According to IEEE 802.16e standard, when an MS switches from awake mode to sleep mode, the MS is required to send a sleep request (MOB-SLP-REQ) message and to receive a sleep response (MOB-SLP-RSP) message. In this paper we propose a new sleep mode scheme, called the power saving mechanism with binary exponential traffic indications. This sleep mode scheme omits MOB-SLP-REQ/RSP messages and has a traffic indication (TRF-IND) interval as a main system parameter, applying the truncated binary exponential increasing method for its length. The proposed scheme in this paper is quite well aligned with the design policy of sleep mode in discussion at IEEE 802.16m in the sense that it tries to minimize the overhead for the state transition between awake mode and sleep mode, and hence it can reduce the delay due to the state transition and enhance the power saving efficiency. We present a mathematical analysis for the proposed scheme and investigate its performance. As performance measures, we provide the sleep interval ratio, the average power consumption, and the mean delay. Using the analytical results, the system parameters such as the initial TRF-IND interval and the maximum binary exponent for TRF-IND intervals can be optimized while satisfying the QoS constraint on the mean delay. The numerical results show that the proposed scheme consumes less energy than the power saving class of type I in the IEEE 802.16e standard.
机译:在IEEE 802.16e(用于MWiMAX的空中接口标准)和IEEE 802.16m(用于IMT-Advanced的MWiMAX的发展)中,节电是电池供电移动台(MS)的重要问题之一。根据IEEE 802.16e标准,当MS从唤醒模式切换到睡眠模式时,要求MS发送睡眠请求(MOB-SLP-REQ)消息并接收睡眠响应(MOB-SLP-RSP)消息。在本文中,我们提出了一种新的睡眠模式方案,称为带有二进制指数流量指示的节能机制。该睡眠模式方案省略了MOB-SLP-REQ / RSP消息,并以通信量指示(TRF-IND)间隔作为主要系统参数,并采用了截断的二进制指数增加方法来增加其长度。本文提出的方案与IEEE 802.16m讨论的睡眠模式的设计策略非常吻合,因为它试图使唤醒模式和睡眠模式之间的状态转换的开销最小化,因此可以减少由于状态转换而延迟,并提高了省电效率。我们对提出的方案进行数学分析,并研究其性能。作为性能指标,我们提供了睡眠间隔比率,平均功耗和平均延迟。使用分析结果,可以优化系统参数,例如初始TRF-IND间隔和TRF-IND间隔的最大二进制指数,同时满足对平均延迟的QoS约束。数值结果表明,与IEEE 802.16e标准中的I类节能类别相比,该方案消耗的能量更少。

著录项

  • 来源
    《Queueing systems》 |2009年第3期|197-227|共31页
  • 作者单位

    Department of Mathematics and Telecommunication Mathematics Research Center, Korea University, Seoul, Korea;

    Department of Mathematics and Telecommunication Mathematics Research Center, Korea University, Seoul, Korea;

    Telecom R&D Center, Samsung Electronics, Suwon, Korea;

    Department of Mathematics and Telecommunication Mathematics Research Center, Korea University, Seoul, Korea Department of Mathematics, Korea University, Anam-dong, Seongbuk-gu, Seoul 136-701, Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    IEEE 802.16e/m; power saving scheme; performance analysis; M/G/1 queueing model;

    机译:IEEE 802.16e / m;节电方案;绩效分析;M / G / 1排队模型;

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