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Measurement and correlation of displacements on the Severn Suspension Bridge using GPS

机译:使用GPS的SEVERN悬索桥位移的测量与相关性

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The use of global navigation satellite systems (GNSS) to monitor the deformations and displacements of structures is well established. Traditionally, research has focussed on the movements of individual locations upon such a structure. In this study, survey-grade global positioning system (GPS) receivers were placed at nine locations upon the bridge and on the tops of the four support towers, and GNSS (GPS, GLONASS) receivers at five key locations on the two suspension cables of the Severn Suspension Bridge. Data were gathered at 10 Hz and 20 Hz, positioned relative to reference GNSS receivers located nearby, over a period of 4 days. This resulted in a dataset allowing the daily movements of the bridge due to applied loading to be measured to millimetre precision. This paper describes the layout of the survey, as well as the movements of the various GNSS antenna locations relative to each other in terms of 3D displacements as well as the frequencies of the movements. A correlation function is developed and applied on the kinematic GPS data, illustrating the synchronised and relative movements of these locations. Correlation between the movements of the bridge's support towers and suspension cables is illustrated, and conclusions about this development with respect to the potential application of the technique as part of a Structural Health Monitoring (SHM) system are drawn.
机译:使用全球导航卫星系统(GNSS)来监测结构的变形和位移是很好的。传统上,研究专注于在这种结构上的个别位置的运动。在本研究中,调查级全球定位系统(GPS)接收器在桥上的九个位置和四个支撑塔的顶部,以及两个悬架电缆上的五个关键位置的GNSS(GPS,GLONASS)接收器。 Severn悬架桥。数据收集在10 Hz和20 Hz,相对于附近的参考GNSS接收器,在4天内定位。这导致数据集允许桥的日常运动导致施加的施加量测量到毫米精度。本文介绍了调查的布局,以及在3D位移方面的各种GNSS天线位置相对于彼此的运动以及运动的频率。在运动GPS数据上开发并应用相关函数,示出了这些位置的同步和相对运动。绘制了桥梁支撑塔和悬架电缆的运动之间的相关性,并且绘制了关于该技术的潜在应用作为结构健康监测(SHM)系统的一部分的潜在应用的结论。

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