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Application-aware adaptive duty cycle-based Medium Access Control for energy efficient wireless data transmissions

机译:基于应用的自适应占空比基于媒体的访问控制,可实现节能的无线数据传输

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This paper introduces a novel Medium Access Control (MAC) strategy for energy efficient wireless data transmissions which reduces energy consumption while minimizing the negative impact on network Quality of Service (QoS). This strategy adaptively adjusts the sleeping window of the mobile devices' wireless transceiver. The proposed mechanism - the Slow sTart Exponential and Linear Algorithm (STELA) - consists of three sleeping window adaptation phases, each phase employing a different duty cycle management function. Based on analyzing historic data regarding traffic arrival patterns, traffic modeling is used to estimate future patterns. Consequently, the specific adaptation phases are scheduled and tuned to improve energy efficiency without compromising data delivery performance. Simulation-based testing results show significant energy savings with reduced impact on network QoS achieved when STELA is used, as opposed to other existing MAC layer protocols (IEEE 802.11 and IEEE 802.16) considered in this paper for performance comparisons.
机译:本文介绍了一种用于节能无线数据传输的新型媒体访问控制(MAC)策略,该策略可降低能耗,同时最大程度地减少对网络服务质量(QoS)的负面影响。此策略可自适应地调整移动设备的无线收发器的睡眠窗口。提出的机制-慢sTart指数和线性算法(STELA)-由三个睡眠窗口适应阶段组成,每个阶段采用不同的占空比管理功能。基于分析有关交通到达模式的历史数据,交通模型用于估计未来的模式。因此,对特定的适应阶段进行了调度和调整,以提高能效,同时又不影响数据传输性能。基于仿真的测试结果表明,与本白皮书中用于性能比较的其他现有MAC层协议(IEEE 802.11和IEEE 802.16)相比,使用STELA时可显着节省能源,并减少对网络QoS的影响。

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