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Dynamic displacement measurement accuracy of GPS for monitoring large civil engineering structures

机译:用于大型土木工程结构监测的GPS动态位移测量精度

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Accelerometer and displacement transducer are two common sensors used for structural displacement measurement. Due to their incapability of measuring static deflection of a structure, Global Positioning System (GPS) is developed as a novel sensor for measuring and monitoring both static and dynamic displacement responses of large civil engineering structures under gust winds. However, the accuracy of dynamic displacement measurement with GPS at the sub-centimeter to millimeter level depends on many factors such as required data update rate, satellite coverage, atmospheric effect, multi-path effect, and GPS data processing methods. Therefore, this paper focuses on the assessment of dynamic displacement measurement accuracy of GPS in two orthogonal directions. A 2-D motion simulation table is first developed as a test bed simulating various types of two perpendicular translational motions of tall buildings. The 2-D motion simulation table was then used to assess the performance of GPS through a series of field measurements in an open area. A band-pass filtering scheme is finally designed and applied to the table motion data recorded by the GPS. The comparison of the table motion recorded by the GPS with the original motion generated by the table shows that the GPS can measure sinusoidal or circular dynamic displacements accurately within certain amplitude and frequency ranges. The comparative results also demonstrate that the GPS can trace wind-induced dynamic responses of tall buildings satisfactorily.
机译:加速度计和位移传感器是用于结构位移测量的两个常见传感器。由于无法测量结构的静态挠度,全球定位系统(GPS)被开发为一种新型传感器,用于测量和监视阵风下大型土木工程结构的静态和动态位移响应。但是,使用亚厘米级到毫米级GPS进行动态位移测量的精度取决于许多因素,例如所需的数据更新率,卫星覆盖范围,大气效应,多径效应和GPS数据处理方法。因此,本文着重评估GPS在两个正交方向上的动态位移测量精度。二维运动模拟表首先被开发为测试床,用于模拟高层建筑的两种类型的两种垂直平移运动。然后,使用二维运动模拟表通过一系列在空旷地区的现场测量来评估GPS的性能。最后,设计了一种带通滤波方案,并将其应用于GPS记录的工作台运动数据。 GPS记录的工作台运动与工作台产生的原始运动的比较表明,GPS可以在一定幅度和频率范围内准确测量正弦或圆形动态位移。比较结果还表明,GPS可以令人满意地跟踪高层建筑的风致动力响应。

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