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Wireless sensor network-based infrastructure damage detection constrained by energy consumption

机译:受能耗限制的基于无线传感器网络的基础设施损坏检测

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Structural health monitoring, which is the process of assessing the health of instrumented structures, is becoming increasingly important as much of the world's infrastructure ages and deteriorates. Wireless sensor networks (WSNs) have the potential to deliver continuous, highly accurate structural health monitoring at a low cost. In this paper, we present a novel WSN system that monitors ambient vibrations at various locations on a structure and looks for deviations from the structure's baseline response to determine if any sections are potentially experiencing damage. In contrast to earlier methods, our system does not require engineering knowledge of the structure on which it is deployed. We also introduce a theoretical framework to attain the system's desired lifetime, which is demonstrated experimentally by determining the amount of energy that our algorithm consumes when running on Zolertia Z1 sensor nodes. Finally, in this context, we introduce a novel circuit that reduces current flow for inactive nodes by 99.97% compared to their minimum sleep current, thus extending their lifetime.
机译:随着世界上许多基础设施的老化和恶化,结构健康监测(评估仪器结构的健康状况的过程)变得越来越重要。无线传感器网络(WSN)有潜力以低成本提供连续,高精度的结构健康监测。在本文中,我们提出了一种新颖的WSN系统,该系统可监视结构上各个位置的环境振动,并寻找与结构基线响应的偏差,以确定是否有任何部分可能遭受损坏。与早期的方法相比,我们的系统不需要工程知识就可以部署该结构。我们还介绍了一种理论框架来实现系统的预期寿命,通过确定算法在Zolertia Z1传感器节点上运行时消耗的能量来进行实验证明。最后,在这种情况下,我们引入了一种新颖的电路,与非活动节点的最小睡眠电流相比,该电路可将非活动节点的电流减少99.97%,从而延长了其使用寿命。

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