IEEE 802.16e网络中基于负载的延迟感知节能方案(DAPSS)

D. Wisdom, Ahmed Yusuf Tambuwal, Aminu Mohammed, Ahmed Audu, M. B. Soroyewun, S. Isaac
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引用次数: 0

摘要

IEEE 802.16标准也被称为全球微波接入互操作性(WiMAX),旨在支持更广泛的覆盖范围、更高的带宽、更低的部署成本,并支持不同的流量类别以节省电力。IEEE增加了移动性特性,这使得移动站(MS)的电池寿命成为一个关键挑战,因为MS是电池供电,具有强制的可充电寿命。提出了一种高效的电池寿命感知节能方案。该方案最大限度地减少了MS的频繁转换,以减少功耗,但由于使用了较长的睡眠间隔,因此增加了平均响应延迟。为此,提出了一种基于业务负载的延迟感知节能方案(DAPSS),以减少响应延迟过大的问题。该方案引入了修改后的最小和最大休眠间隔,以减少MS较长的休眠时间,并根据流量负载动态调整休眠参数。它采用延迟感知算法来节省电力。利用离散事件模拟器对该方案进行了评估,结果表明,该方案在平均功耗和响应延迟方面均优于现有方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Delay Aware Power Saving Scheme (DAPSS) Base on Load in Traffic IEEE 802.16e Networks
IEEE 802.16 Standard also known as worldwide interoperability for Microwave Access (WiMAX) is designed to support wider coverage, higher bandwidth, less cost of deployment with different traffic classes’ support for power savings. The IEEE added mobility characteristics which made batterylife of Mobile Station (MS) a critical challenge, since MS are battery powered with an impose rechargeable life. An Efficient Battery Lifetime Aware Power Saving Scheme was proposed. The Scheme minimizes frequent transition of MS in order-to reduce power consumption but increases average response delay due to a longer sleep interval used. Thus, a Delay Aware Power Saving Scheme (DAPSS) Based on Traffic Load is proposed to reduce the excessive response delay. The Scheme introduces a modified minimum and maximum sleep interval in order to reduce the longer sleep time of a MS, and dynamically tunes the sleep parameters more appropriately according to the traffic load. It employed a delay aware algorithm to save power. The Scheme was evaluated using discrete event simulator, the results showed that the proposed DAPSS achieves superior performance compared to the existing Scheme in terms of the average power consumption and response delay.
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