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首页> 外文期刊>Measurement Science & Technology >Analysis of the dynamic characteristics of a suspension bridge based on RTK-GNSS measurement combining EEMD and a wavelet packet technique
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Analysis of the dynamic characteristics of a suspension bridge based on RTK-GNSS measurement combining EEMD and a wavelet packet technique

机译:基于RTK-GNSS测量的悬架桥梁动态特性分析EEMD和小波包技术

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摘要

To investigate the dynamic characteristics of a self-anchored suspension bridge (i.e. Tianjin Fumin Bridge), a real time kinematic-global navigation satellite system (RTK-GNSS) is used to achieve the displacement responses of the structure. Seeing the defect in the positioning accuracy of RTK-GNSS, a combined method (EEMDWP) of ensemble empirical mode decomposition (EEMD) and wavelet packet (WP) analysis is firstly put forward to improve the precision of the vibration signals. Subsequently, fast Fourier transform and the random decrement technique are applied to estimate the natural frequency and the corresponding damping ratio of the structure. Meanwhile, to contrast the field measurement results, the finite element model (FEM) of the structure is established. Finally, the analysis results indicate that: (1) the RTK-GNSS technique is a powerful tool for monitoring the deformation of long-span bridges; (2) the proposed EEMDWP method is demonstrated to be better than the single EEMD or WP method; (3) the structural dynamic parameters are successfully obtained (i.e. the first natural frequency: 0.5873 Hz, the corresponding damping ratio: 2.12%); (4) the results from the field measurement are in agreement with the FEM with a difference of about 5% from each other.
机译:为了研究自锚式悬架桥(即天津熏桥)的动态特性,使用实时运动 - 全球导航卫星系统(RTK-GNSS)来实现结构的位移响应。在首先提出了集合经验模式分解(EEMD)和小波包(WP)分析的组合方法(EEMDWP)的定位精度,提高了振动信号的精度。随后,应用快速傅里叶变换和随机减量技术来估计结构的固有频率和相应的阻尼比。同时,为了对比场测量结果,建立了结构的有限元模型(FEM)。最后,分析结果表明:(1)RTK-GNSS技术是一种强大的工具,用于监测长跨度桥梁的变形; (2)所提出的EEMDWP方法被证明比单一EEMD或WP方法更好; (3)成功获得了结构性动态参数(即第一个固有频率:0.5873Hz,相应的阻尼比:2.12%); (4)现场测量结果与彼此差异约为5%的PEAR协议。

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