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E-MiLi: Energy-Minimizing Idle Listening in Wireless Networks

机译:E-MiLi:无线网络中的能耗最小的空闲监听

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WiFi interface is known to be a primary energy consumer in mobile devices, and idle listening (IL) is the dominant source of energy consumption in WiFi. Most existing protocols, such as the 802.11 power-saving mode (PSM), attempt to reduce the time spent in IL by sleep scheduling. However, through an extensive analysis of real-world traffic, we found more than 60 percent of energy is consumed in IL, even with PSM enabled. To remedy this problem, we propose Energy-Minimizing idle Listening (E-MiLi) that reduces the power consumption in IL, given that the time spent in IL has already been optimized by sleep scheduling. Observing that radio power consumption decreases proportionally to its clock rate, E-MiLi adaptively downclocks the radio during IL, and reverts to full clock rate when an incoming packet is detected or a packet has to be transmitted. E-MiLi incorporates sampling rate invariant detection, ensuring accurate packet detection and address filtering even when the receiver's sampling clock rate is much lower than the signal bandwidth. Further, it employs an opportunistic downclocking mechanism to optimize the efficiency of switching clock rate, based on a simple interface to existing MAC-layer scheduling protocols. We have implemented E-MiLi on the USRP software radio platform. Our experimental evaluation shows that E-MiLi can detect packets with close to 100 percent accuracy even with downclocking by a factor of 16. When integrated with 802.11, E-MiLi can reduce energy consumption by around 44 percent for 92 percent of users in real-world wireless networks.
机译:已知WiFi接口是移动设备中的主要能源消耗者,而空闲侦听(IL)是WiFi中能耗的主要来源。大多数现有协议(例如802.11省电模式(PSM))试图通过睡眠调度来减少在IL中花费的时间。但是,通过对现实流量的广泛分析,我们发现即使启用了PSM,IL中也消耗了60%以上的能量。为了解决此问题,我们建议采用节能最小的空闲侦听(E-MiLi)来降低IL中的功耗,因为已经通过睡眠调度优化了在IL中花费的时间。观察到无线电功率消耗与其时钟频率成正比降低后,E-MiLi在IL期间自适应降低无线电频率,并在检测到传入数据包或必须发送数据包时恢复为完整时钟频率。 E-MiLi结合了采样率不变检测功能,即使在接收器的采样时钟速率远低于信号带宽的情况下,也可以确保准确的数据包检测和地址过滤。此外,它基于现有MAC层调度协议的简单接口,采用机会降频机制来优化切换时钟速率的效率。我们已经在USRP软件无线电平台上实现了E-MiLi。我们的实验评估表明,即使在降频16倍的情况下,E-MiLi仍可以检测到接近100%的准确性的数据包。与802.11集成后,E-MiLi可以为92%的用户实际减少约44%的能耗世界无线网络。

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