Multi-scale deformation monitoring and characterization of large-span railway bridge by joint satellite/ground-based InSAR and BDS

IF 5.2 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
Xinyi Li , Lv Zhou , Jun Ma , Cheng Wang , Yuanjin Pan , Yukai Chen , Di Zhang , Meilin He
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Abstract

Combining various monitoring technologies for deformation monitoring of large-span railway bridge helps to gain a comprehensive understanding of the bridge’s dynamic characteristics and deformation characteristics. This paper proposes a joint satellite/ground-based InSAR (Interferometric Synthetic Aperture Radar) and BDS (Beidou Navigation Satellite System) method for the deformation monitoring and analysis of large-span railway bridges. Initially, the satellite-based InSAR is employed to conduct large-scale and long-term deformation monitoring of the Ganjiang Super Bridge. Time series deformation is then analyzed using ESMD (extreme-point symmetric mode decomposition). Following that, ground-based radar interferometry and BDS are employed for small-scale and high-frequency deformation monitoring of critical structural points on the bridge. Lastly, time series deformation and spectral analysis are used to summarize the dynamic characteristics of the bridge. The following conclusions are obtained based on the study: (1) From June 2021 to August 2023, InSAR monitoring results indicated relatively substantial subsidence on the bridge east side, likely due to sediment accumulation; ESMD deformation decomposition revealed a 160-day deformation periodicity and multiple mutations. (2) By comparing the deformation of adjacent points using ground radar interferometry and BDS, it is found that the deformation trends in their monitoring results are relatively similar; both methods excellently capture significant deformation data. (3) BDS monitoring results are related to bridge structural components and force transmission direction; ground-based radar interferometry results are influenced by the bridge structure and external forces; the natural frequency of the Ganjiang Super Bridge is 0.54 Hz.
卫星/地基InSAR与北斗联合监测大跨度铁路桥梁多尺度变形特征
结合多种监测技术对大跨度铁路桥梁进行变形监测,有助于全面了解桥梁的动力特性和变形特性。提出了一种卫星/地面干涉合成孔径雷达(InSAR)与北斗卫星导航系统(BDS)联合进行大跨度铁路桥梁变形监测分析的方法。初步采用星载InSAR对赣江特大桥进行大尺度、长期变形监测。然后使用极值点对称模态分解(ESMD)分析时间序列变形。随后,采用地基雷达干涉测量和北斗系统对桥梁关键结构点进行小尺度、高频变形监测。最后,采用时间序列变形和谱分析方法总结了桥梁的动力特性。研究得出以下结论:(1)2021年6月至2023年8月,InSAR监测结果显示桥梁东侧沉降相对较大,可能是泥沙淤积所致;ESMD变形分解显示出160 d的变形周期和多突变。(2)通过对比地面雷达干涉测量与北斗系统监测相邻点的变形,发现两者监测结果中的变形趋势较为相似;这两种方法都能很好地捕获重要的变形数据。(3) BDS监测结果与桥梁结构构件和传力方向有关;地基雷达干涉测量结果受桥梁结构和外力的影响;赣江特大桥的固有频率为0.54 Hz。
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来源期刊
Measurement
Measurement 工程技术-工程:综合
CiteScore
10.20
自引率
12.50%
发文量
1589
审稿时长
12.1 months
期刊介绍: Contributions are invited on novel achievements in all fields of measurement and instrumentation science and technology. Authors are encouraged to submit novel material, whose ultimate goal is an advancement in the state of the art of: measurement and metrology fundamentals, sensors, measurement instruments, measurement and estimation techniques, measurement data processing and fusion algorithms, evaluation procedures and methodologies for plants and industrial processes, performance analysis of systems, processes and algorithms, mathematical models for measurement-oriented purposes, distributed measurement systems in a connected world.
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