选举:无线传感器网络的节能和低延迟调度技术

S. Begum, Shao-Cheng Wang, B. Krishnamachari, A. Helmy
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引用次数: 16

摘要

我们提出了一种新的睡眠调度方案ELECTION,它可以自适应地调度无线有源传感器网络中通信无线电和传感器的睡眠周期。利用潜在物理现象中的空间和时间相关性,我们的方案控制无线电和传感器的睡眠时间表,并自适应地满足应用程序的能源效率、延迟和响应需求。在正常运行阶段,传感器在每次唤醒时采集一次环境样本,并根据感知到的环境调整其睡眠周期。当从采样数据中感知到异常时,传感器与邻居进行通信,形成集群并向基站报告。分析和仿真结果表明,选举在节能、延迟和响应性方面明显优于现有协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ELECTION: energy-efficient and low-latency scheduling technique for wireless sensor networks
We propose ELECTION, a new sleep scheduling scheme that adaptively schedules the sleep cycles of both communication radios and sensors in wireless active sensor networks. Taking advantage of spatial and temporal correlations in the underlying physical phenomenon, our scheme controls sleeping schedules of radios and sensors, and adaptively meets the energy efficiency, latency and responsiveness needs of applications. During the normal phase of operation, sensors take samples of the environment once at each wakeup time, and based on the perceived environment they adapt their sleep cycles. When an abnormality is perceived from the sampled data, sensors communicate with their neighbors to form a cluster and report to the base station. Analysis and simulation results show that ELECTION outperforms existing protocols significantly in terms of energy savings as well as delay and responsiveness.
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