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Field installation details of a Wireless Shape-Acceleration Array system for geotechnical applications

机译:用于岩土工程应用的无线形状加速阵列系统的现场安装详细信息

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The evaluation, health monitoring and response prediction of soil and soil-structure systems during construction and due to extreme hazard conditions are on the verge of a significant paradigm shift. New and less expensive sensing technologies have enabled the development of innovative instrumentation and advanced interactive modeling tools. These tools, combined with recent advances in information technology including wireless sensor networking, data mining, visualization and system identification, promise significant improvements in real time monitoring during construction, sensor-assisted design and early warning of impending failure. This paper presents the newly developed Wireless Shape-Acceleration Array (WSAA) sensor that measures multi-dimensional acceleration and deformation profiles and constitutes a major step toward autonomous monitoring technology for soil and soil-structure systems. The Wireless Shape-Acceleration Array (WSAA) sensor employs micro-machined electromechanical sensors (MEMS), which have enabled gravity-based shape calculation along a sensorized substrate. The method is an extension of technologies that use fiber optic orientation sensing to calculate 3D polylines representing the shape of a sensor array. WSAA uses MEMS accelerometers in a pre-calibrated, geometrically constrained array to provide long-term stability previously unattainable with fiber optic methods. This sensor array is capable of measuring 2D soil acceleration and 3D permanent ground deformations to a depth of one hundred meters. Each sensor array is connected to a wireless earth station to enable real time monitoring of a wide range of soil and soil-structure systems as well as remote sensor configuration. This paper presents the evolving design of this new sensor array as well as lessons learned from two field installations of this sensor.
机译:在施工过程中以及由于极端危险条件而对土壤和土壤结构系统进行的评估,健康监测和响应预测即将发生重大的范式转变。新的和较便宜的传感技术使创新的仪器和先进的交互式建模工具得以开发。这些工具与无线传感器网络,数据挖掘,可视化和系统识别等信息技术的最新发展相结合,有望显着改善施工期间的实时监控,传感器辅助设计以及即将发生的故障的预警。本文介绍了新开发的无线形状加速阵列(WSAA)传感器,该传感器可测量多维加速度和变形轮廓,并朝着土壤和土壤结构系统的自主监测技术迈出了重要的一步。无线形状加速阵列(WSAA)传感器采用了微机械机电传感器(MEMS),该传感器已实现了沿重力感应的沿基板的形状计算。该方法是对技术的扩展,该技术使用光纤方向感测来计算表示传感器阵列形状的3D折线。 WSAA在预先校准的几何约束阵列中使用MEMS加速度计,以提供光纤方法无法获得的长期稳定性。该传感器阵列能够测量100米深度的2D土壤加速度和3D永久地面变形。每个传感器阵列都连接到无线地球站,以实现对各种土壤和土壤结构系统以及远程传感器配置的实时监控。本文介绍了这种新型传感器阵列的演进设计,以及从该传感器的两个现场安装中获得的经验教训。

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