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Detection of Structural Vibration with High-Rate Precise Point Positioning: Case Study Results Based on 100 Hz Multi-GNSS Observables and Shake-Table Simulation

机译:高速精确点定位检测结构振动:基于100 Hz Multi-GNSS观测值和振动台仿真的案例研究结果

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摘要

This contribution presents and assesses the methodology aiming at the characterization of the structural vibrations with high-rate GNSS measurements. As commonly employed precise point positioning (PPP) based on ionosphere-free linear combination of undifferenced signals may not meet the high requirements in terms of displacement precision, a modified processing strategy has been proposed. The algorithms were implemented in the own-developed GNSS processing software and validated using the designed experiment. For this purpose, we have set up a field experiment taking advantage of the prototype shake-table, which simulated the dynamic horizontal displacements of the GNSS antenna. The device ensured a periodic motion of the antenna with modifiable characteristics, namely amplitude and frequency. In this experiment, we have set the amplitudes from 1.5 to 9 mm and the frequency to 3.80 Hz. As a dataset, we have used 100 Hz GPS, Galileo, and BDS measurements. The results confirmed a high applicability of the enhanced PPP processing strategy for precise displacement detection. Specifically, it was feasible to obtain the dynamic displacements with precision at the level of millimeters. The differences between the PPP-derived amplitude and the true amplitude of the simulated displacements were in the range of 0.5–1.3 mm, whereas the difference between the detected and benchmark frequency did not exceed 0.026 Hz. Hence, the proposed methodology allows meeting the specific demands of structural displacement monitoring.
机译:这项贡献提出并评估了旨在通过高速率GNSS测量表征结构振动的方法。由于基于无电离层的无电离线性组合的常用精确点定位(PPP)可能无法满足位移精度方面的高要求,因此提出了一种改进的处理策略。该算法在自己开发的GNSS处理软件中实现,并使用设计的实验进行了验证。为此,我们利用原型振动台进行了现场实验,该振动台模拟了GNSS天线的动态水平位移。该设备确保了天线的周期性运动,并具有可修改的特性,即幅度和频率。在此实验中,我们将幅度设置为1.5到9 mm,频率设置为3.80 Hz。作为数据集,我们使用了100 Hz GPS,伽利略和BDS测量。结果证实了增强的PPP处理策略在精确位移检测中的高度适用性。具体而言,以毫米级的精度获得动态位移是可行的。 PPP得出的幅度与模拟位移的真实幅度之间的差异在0.5-1.3 mm的范围内,而检测到的和基准频率之间的差异不超过0.026 Hz。因此,所提出的方法可以满足结构位移监测的特定要求。

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