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一种用于地质和岩土工程应用中三维监测不连续面的非接触式定位系统。

A contactless positioning system for monitoring discontinuities in three dimensions with geological and geotechnical applications.

作者信息

Rinaldi-Montes Natalia, Rowberry Matt, Frontera Carlos, Baroň Ivo, Garcés Javier, Blahůt Jan, Pérez-López Raúl, Pennos Christos, Martí Xavi

机构信息

Departamento de Física, Universidad de Oviedo, E-33007 Oviedo, Spain.

Institute of Rock Structure and Mechanics ASCR, V Holešovičkách 41, 18209 Prague, Czech Republic.

出版信息

Rev Sci Instrum. 2017 Jul;88(7):074501. doi: 10.1063/1.4993925.

Abstract

In this paper, a contactless positioning system is presented which has been designed to monitor the kinematic behavior of mechanical discontinuities in three dimensions. The positioning system comprises a neodymium magnet, fixed on one side of a discontinuity, and a magnetoresistive sensing array, fixed on the opposing side. Each of the anisotropic magnetoresistive sensors in the sensing array records the magnetic field along three orthogonal directions. The positioning system intrinsically generates compact data packages which are transmitted effectively using a range of standard wireless telecommunication technologies. These data are then modeled using a global least squares fitting procedure in which the adjustable parameters are represented by the position and orientation of the neodymium magnet. The instrumental resolution of the positioning system can be tuned depending on the strength of the magnetic field generated by the neodymium magnet and the distance between the neodymium magnet and the magnetoresistive sensing array. For a typical installation, the displacement resolution is shown to be circa 10 μm while the rotation resolution is circa 0.1°. The first permanently deployed positioning system was established in June 2016 to monitor the behavior of an N-S trending fault located at the contact between the eastern Alps and the Vienna Basin. The robust design of the positioning system is demonstrated by the fact that no interruptions in the broadcasted data streams have occurred since its installation. It has a range of potential applications in many areas of basic and applied research including geology, geotechnical engineering, and structural health monitoring.

摘要

本文介绍了一种非接触式定位系统,该系统旨在监测机械不连续处的三维运动行为。该定位系统包括一个固定在不连续处一侧的钕磁铁和一个固定在相对一侧的磁阻传感阵列。传感阵列中的每个各向异性磁阻传感器记录沿三个正交方向的磁场。该定位系统本质上生成紧凑的数据包,这些数据包可使用一系列标准无线通信技术进行有效传输。然后,使用全局最小二乘拟合程序对这些数据进行建模,其中可调参数由钕磁铁的位置和方向表示。定位系统的仪器分辨率可以根据钕磁铁产生的磁场强度以及钕磁铁与磁阻传感阵列之间的距离进行调整。对于典型的安装,位移分辨率约为10μm,旋转分辨率约为0.1°。第一个永久部署的定位系统于2016年6月建立,用于监测位于东阿尔卑斯山与维也纳盆地交界处的一条南北走向断层的行为。自安装以来,广播数据流未出现中断,这证明了定位系统的稳健设计。它在基础研究和应用研究的许多领域都有一系列潜在应用,包括地质学、岩土工程和结构健康监测。

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