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首页> 外文期刊>Applied Sciences >A Wireless Sensor Network Using GNSS Receivers for a Short-Term Assessment of the Modal Properties of the Neckartal Bridge ?
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A Wireless Sensor Network Using GNSS Receivers for a Short-Term Assessment of the Modal Properties of the Neckartal Bridge ?

机译:使用GNSS接收器的无线传感器网络,用于短期评估Neckartal桥的模态特性?

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摘要

In this article, we present a novel structural health monitoring system based on a wireless sensor network for GNSS (global navigation satellite system) receivers. The GNSS network presented here consists of three GNSS rover stations and one base station that are deployed at the Neckartal bridge on the Autobahn A81 in southwest Germany. The newly-developed GNSS sensor nodes support satellite data logging up to a sampling rate of 20 Hz. Due to the ultra-low-power consumption achieved by the wake-up receiver during inactive periods, the nodes offer a lifetime from 20 to almost 200 days, without energy harvesting and depending on the satellite data logging period. By performing differential post-processing, precise positioning information in the millimeter range could be achieved. Using the GNSS sensors, we determined resonant frequencies at 0.33 Hz and 1.31 Hz, mainly in the lateral direction of the bridge. To verify the GNSS results, we placed an accelerometer on the bridge. The frequencies detected by the acceleration sensor correspond well to the frequencies found by the GNSS sensors, although the accelerometer measured further higher frequencies as it is probably more sensitive to small amplitudes.
机译:在本文中,我们为GNSS(全球导航卫星系统)接收器提供了一种基于无线传感器网络的新型结构健康监测系统。此处介绍的GNSS网络由三个GNSS流动站和一个基站组成,它们部署在德国西南的A81高速公路上的内卡塔尔桥上。新开发的GNSS传感器节点支持高达20 Hz采样率的卫星数据记录。由于唤醒接收器在不活动期间实现的超低功耗,这些节点的使用寿命为20天到近200天,而无需收集能量,并且取决于卫星数据记录的时间。通过执行差分后处理,可以实现毫米范围内的精确定位信息。使用GNSS传感器,我们确定了0.33 Hz和1.31 Hz的共振频率,主要在电桥的横向方向上。为了验证GNSS的结果,我们在桥上放置了一个加速度计。加速度传感器检测到的频率与GNSS传感器找到的频率非常吻合,尽管加速度计可以测量更高的频率,因为它可能对小振幅更敏感。

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