传感器网络中自适应唤醒窗口的微脉冲框架

D. Zeinalipour-Yazti, P. Andreou, Panos K. Chrysanthis, G. Samaras, A. Pitsillides
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引用次数: 14

摘要

在本文中,我们提出了MicroPulse,这是一个基于查询q产生的数据工作负载来调整传感设备S唤醒窗口的新框架。假设一个典型的基于树的聚合场景,唤醒窗口被定义为时间间隔r,在此期间S启用其收发器以便从其子节点收集结果。最小化r的长度使S能够节省能量,从而可以用来延长网络的寿命,从而提高结果的质量。我们的方法建立在分析最近的数据采集活动和使用关键路径方法的网络内执行识别瓶颈的基础上。我们通过对真实数据集的跟踪驱动实验表明,MicroPulse可以将唤醒窗口的能量成本降低三个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The MicroPulse Framework for Adaptive Waking Windows in Sensor Networks
In this paper we present MicroPulse, a novel framework for adapting the waking window of a sensing device S based on the data workload incurred by a query Q. Assuming a typical tree-based aggregation scenario, the waking window is defined as the time interval r during which S enables its transceiver in order to collect the results from its children. Minimizing the length of r enables S to conserve energy that can be used to prolong the longevity of the network and hence the quality of results. Our method is established on profiling recent data acquisition activity and on identifying the bottlenecks using an in-network execution of the Critical Path Method. We show through trace- driven experimentation with a real dataset that MicroPulse can reduce the energy cost of the waking window by three orders of magnitude.
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