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Rigid Bridges Health Dynamic Monitoring Using 100 Hz GPS Single-Frequency and Accelerometers

机译:使用100 Hz GPS单频和加速度计的刚性桥梁健康动态监测

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This article presents the modal frequency recordings of a rigid bridge, monitored by the GPS receivers (Global Positioning System) with a data recording rate of 100 Hz and accelerometers. The GPS data processing was performed through the double - difference phase, using the adjusted interferometry technique ( i . e . phase residue method — PRM &reg ). In the method, the double - difference phase of the carrier L1 is realized by using two satellites only, one was positioned at the zenith of the structure and the other satellite was positioned near the horizon. The results of the parametric adjustment of the PRM observations were finalized through software Interferometry, mathematical algorithm w ere applied and compared with the accelerometer. The comparison served to validate the use of GPS as a fast and reliable instrument for the preliminary monitoring of the dynamic behavior of the bridge, road artworks which are common in several countries, especially in the Brazilian road network . The data time series from the GPS and accelerometers were processed using the Wavelet. The detection of frequencies means that the combination of 100 Hz GPS receivers and the PRM allows detecting vibrations up to 5 mm. It presented significant results which were never obtained by the Fourier Trans form.
机译:本文介绍了由GPS接收器(全球定位系统)以100 Hz的数据记录速率和加速度计监视的刚性桥梁的模态频率记录。 GPS数据处理是使用调整后的干涉测量技术(相位残差法-PRM&reg)通过双差相位执行的。在该方法中,仅使用两颗卫星即可实现载波L1的双差相位,其中一颗位于结构的顶点,另一颗卫星位于地平线附近。通过干涉测量软件最终确定PRM观测值的参数调整结果,并应用数学算法并将其与加速度计进行比较。比较结果验证了GPS作为一种快速可靠的工具进行桥梁的动态行为的初步监测的有效性,该工具在一些国家(尤其是在巴西的道路网络中)很常见。使用小波处理了来自GPS和加速度计的数据时间序列。频率检测意味着100 Hz GPS接收器和PRM的组合允许检测高达5 mm的振动。它提供了重要的结果,而傅立叶变换形式从来没有获得过。

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