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Investigation of the Dynamic Behavior of a Super High-rise Structure using RTK-GNSS Technique

机译:基于RTK-GNSS技术的超高层建筑动力特性研究

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摘要

Super high-rise structures have a significant deformation under ambient excitations such as earthquake and wind, which may lead to structural instability and even damage. To capture the dynamic characteristics of a super high-rise structure under construction (i.e., Tianjin 117 tower), Real Time Kinematic - Global Navigation Satellite Systems (RTK-GNSS) sensors are employed to derive the horizontal displacement of the structure. Considering the defects in measurement accuracy of RTK-GNSS sensors, a Type 1 Chebyshev high-pass digital filter is firstly employed and thus the output results are smoothed. Subsequently, based on the smoothed signals, the natural frequencies and the corresponding damping ratios are extracted via FFT (Fast Fourier Transform) and RDT-LDM (random decrement technique combined with logarithmic decrement method). It is found that the results from the field measurement coincide with the numerical simulation. Finally, the structural parameters are successfully obtained and illustrated graphically.
机译:超高层结构在地震和风等外界激励下会产生明显的变形,这可能导致结构不稳定甚至损坏。为了捕获正在施工的超高层结构(即天津117塔)的动态特性,采用了实时运动-全球导航卫星系统(RTK-GNSS)传感器来推导出该结构的水平位移。考虑到RTK-GNSS传感器测量精度的缺陷,首先采用1型Chebyshev高通数字滤波器,从而使输出结果变得平滑。随后,基于平滑后的信号,通过FFT(快速傅立叶变换)和RDT-LDM(随机减量技术与对数减量方法相结合)提取固有频率和相应的阻尼比。结果表明,现场测量结果与数值模拟吻合。最后,结构参数已成功获得并以图形方式说明。

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