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Delay-aware Power Saving Mechanism for 802.11 Wireless LANs via NDN

机译:通过NDN的802.11无线局域网的延迟感知节能机制

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Idle listening (IL) is the major source of power consumption in Wi-Fi interface for mobile station. The reason is that station (STA) does not know when there would be data for it and it has to stay in IL to wait for the data. With the advantages of named data networking, this problem can be solved well, However, stations may have different requirements on delay, the existing power saving mechanism lacks consideration of delay. In order to improve the quality of service (QoS), we apply an innovative network architecture of NDN and mark the real-time requirements of stations in the Interest packets using a flag bit. And we use a priority sending queue to further reduce the latency of the delay-sensitive packets. The requirements of delay and energy efficiency can be satisfied with different settings of the flag bit. The simulation results show that the proposal can reduce the average delay up to 20% compared with the power saving mode in NDN and gain the commendable energy efficiency.
机译:空闲侦听(IL)是移动站Wi-Fi接口中功耗的主要来源。原因是站(STA)不知道何时会有数据,它必须停留在IL中以等待数据。借助命名数据网络的优点,可以很好地解决该问题,但是,站点对延迟的要求可能不同,现有的节能机制缺乏对延迟的考虑。为了提高服务质量(QoS),我们采用了NDN的创新网络体系结构,并使用标志位在Interest数据包中标记了站点的实时需求。而且,我们使用优先级发送队列来进一步减少对延迟敏感的数据包的延迟。延迟和能效的要求可以通过标志位的不同设置来满足。仿真结果表明,与NDN省电模式相比,该方案可将平均延迟降低20%,并获得可观的能效。

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