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An Experimental Low-Cost, Low-Data-Rate Rapid Structural Assessment Network

机译:实验性低成本,低数据率快速结构评估网络

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In this paper, we present the design, implementation, and experimental evaluation of a wireless sensor network for real-time structural “health” monitoring. We use simple custom-built gages to detect cracks in critical structural elements. The main data reports require no structural analysis for interpretation, have a low data rate, and are naturally resilient to loss. We show how a variety of low-cost, off-the-shelf data acquisition/communication devices can be used to support remote monitoring by a control center. The heterogeneous hardware is accommodated by the use of open technology standards and a software architecture that is portable, modular, and highly configurable. We present an experimental evaluation of our structural-assessment network done using a full-scale three-story reinforced concrete building that was tested under lateral forces emulating forces induced by earthquakes. Our results show that a set of 12 strategically positioned sensors achieved a 100% detection rate for cracks crossing sensors and a zero false-alarm rate (in the sense that all signals exceeding a preset threshold were traced to cracks exceeding a specified total width).
机译:在本文中,我们介绍了用于实时结构“健康”监控的无线传感器网络的设计,实现和实验评估。我们使用简单的定制量规来检测关键结构元件中的裂缝。主要数据报告无需进行结构分析即可解释,数据速率低,并且自然可以抵抗丢失。我们展示了如何使用各种低成本,现成的数据采集/通信设备来支持控制中心进行远程监视。通过使用开放技术标准和可移植,模块化和高度可配置的软件体系结构,可以容纳异构硬件。我们提供了使用完整的三层钢筋混凝土建筑进行结构评估网络的实验评估,该建筑在模拟地震引起的力的横向力下进行了测试。我们的结果表明,一组12个战略定位的传感器实现了对裂纹穿越传感器的100%的检测率和零误报警率(在某种意义上,所有超过预设阈值的信号都被追踪到超过指定总宽度的裂纹)。

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