Performance of an efficient sleep mode operation for IEEE 802.16m

S. Baek, B. Choi
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引用次数: 9

Abstract

Power saving is one of the important issues for battery-powered mobile station in mobile WiMAX. Both IEEE 802.16e and IEEE 802.16m standards define sleep mode operations for power saving of mobile stations. In IEEE 802.16e, sleep mode alternates the listening window of fixed length and the sleep window where the sleep window can be doubled. The mobile station sends or receives packets during the active mode. In IEEE 802.16m, sleep cycle consists of extendable listening window and sleep window where sleep cycle can be doubled and the sleep window is the remaining part of sleep cycle. The mobile station sends or receives the data during the extendable listening window without going back to the active mode. The extendable listening window is implemented by T_AMS timer which plays the role of sleep mode request/response messages in the IEEE 802.16e. In this paper, we propose an efficient sleep mode operation for IEEE 802.16m advanced mobile WiMAX. The proposed scheme takes advantages of sleep modes in both IEEE 802.16e and IEEE 802.16m. This scheme has binary exponential sleep windows which guarantee the minimum length for effective power saving. The mobile station uses the T_AMS timer in IEEE 802.16m so that the mobile station sends or receives data packets during the extendable listening window in the sleep mode. We mathematically analyze the proposed scheme by an embedded Markov chain to obtain the average message delay and the average power consumption of a mobile station. The analytical results match with the simulation results very well. The analytical results show that the power consumption of our scheme is better than those of the legacy sleep modes in the IEEE 802.16e and the IEEE 802.16m under the same delay bound.
IEEE 802.16m有效睡眠模式操作的性能
节能是移动WiMAX中电池供电移动站的重要问题之一。IEEE 802.16e和IEEE 802.16m标准都定义了睡眠模式操作,以节省移动站的电量。在IEEE 802.16e中,睡眠模式交替使用固定长度的监听窗口和睡眠窗口,其中睡眠窗口可以翻倍。移动站在活动模式下发送或接收数据包。在IEEE 802.16m中,睡眠周期由可扩展的监听窗口和睡眠窗口组成,其中睡眠周期可以翻倍,睡眠窗口是睡眠周期的剩余部分。移动站在可扩展侦听窗口期间发送或接收数据,而不返回到活动模式。可扩展的监听窗口由T_AMS定时器实现,该定时器在IEEE 802.16e中扮演睡眠模式请求/响应消息的角色。在本文中,我们为IEEE 802.16m高级移动WiMAX提出了一种高效的睡眠模式操作。该方案同时利用了IEEE 802.16e和IEEE 802.16m的休眠模式。该方案具有二进制指数睡眠窗,保证了有效节能的最小长度。移动站使用IEEE 802.16m中的T_AMS定时器,使移动站在可扩展侦听窗口内以休眠模式发送或接收数据包。利用嵌入马尔可夫链对所提出的方案进行数学分析,得到移动基站的平均消息延迟和平均功耗。分析结果与仿真结果吻合较好。分析结果表明,在相同的延迟界下,该方案的功耗优于传统的IEEE 802.16e和IEEE 802.16m休眠模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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