CUPID - Communication Pattern Informed Duty Cycling in Sensor Networks

Daniel Kruger, D. Pfisterer, S. Fischer
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引用次数: 9

Abstract

Now that sensor networks are gradually deployed in commercial settings, they must live up to many expectations, particularly offering both years of unattended operation and low-delay event reporting. However, experiences from real-world trials have shown that decent trade-offs between these two conflicting goals are hard to find. In this paper, we show how staggered wake-ups achieve this. We call this low-delay and low-power duty cycle management scheme CUPID because its parameterization is based on the expected communication patterns in the network, duty-cycle and latency requirements. We show by simulations and real-world experiments with more than 150 nodes that our scheme significantly reduces the packet delay for low-duty cycle settings, especially in large networks.
丘比特——传感器网络中通知占空比的通信模式
现在,传感器网络逐渐部署在商业环境中,它们必须达到许多期望,特别是提供多年的无人值守操作和低延迟事件报告。然而,现实世界的试验经验表明,很难在这两个相互冲突的目标之间找到适当的权衡。在本文中,我们展示了交错唤醒是如何实现这一目标的。我们称这种低延迟和低功耗占空比管理方案为CUPID,因为它的参数化是基于网络中预期的通信模式、占空比和延迟要求。我们通过模拟和超过150个节点的真实世界实验表明,我们的方案显着降低了低占空比设置的数据包延迟,特别是在大型网络中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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