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Monitoring the response of Severn Suspension Bridge in the United Kingdom using multi-GNSS measurements

机译:使用多GNSS测量监测英国Severn悬架桥的响应

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摘要

The application of GPS in bridge monitoring aims to determine accurately and precisely the response of the deck and towers of the bridge and estimate the main response characteristics (amplitude and modal frequencies). The main requirement of GPS monitoring is a high level of accuracy and availability of fixed solutions, which ensure the reliable operation of GPS and result in the precise estimation of the bridge's response. However, the derived GPS time series of bridge monitoring can be contaminated by noise, due to the performance of the GPS satellite(s), the geometry of the GPS satellite constellation and the potential obstructions due to the bridge elements, which can even lead to GPS solution of poor accuracy and/or precision and result in reduced efficiency of the performance of the GPS monitoring. This study investigates the potential contribution of other Global Navigation Satellite Systems (GNSS) constellations for a more robust and reliable displacement time series solution, derived from multi-GNSS records. More specifically, a novel method is developed to derive the optimal combination of GNSS records to determine the GNSS displacement time series based on checks of parameters which reflect the geometry of the satellite constellation and the quality of the GNSS satellites signals. The method is applied in monitoring of the Severn Suspension Bridge, in the United Kingdom, and it is revealed the enhancement in the GNSS monitoring performance of the bridge response for specific time intervals for various locations on the bridge's support towers, suspension cables and deck.
机译:GPS在桥梁监测中的应用旨在准确,精确地确定桥梁的甲板和塔的响应,并估计主要响应特性(幅度和模态频率)。 GPS监测的主要要求是固定解决方案的高度准确性和可用性,确保了GPS的可靠运行,导致桥梁响应的精确估计。然而,由于GPS卫星的性能,GPS卫星星座的性能,GPS卫星星座的几何形状和由于桥接元件引起的潜在障碍物,可以被噪声污染桥梁监测的衍生GPS时间序列。 GPS精度和/或精度差的解决方案,并导致GPS监测性能的效率降低。本研究调查了来自多GNSS记录的更强大和可靠的位移时间序列解决方案的其他全球导航卫星系统(GNSS)星座的潜在贡献。更具体地,开发了一种新的方法来导出GNSS记录的最佳组合,以基于反映卫星星座的几何形状的参数和GNSS卫星信号的质量的检查来确定GNSS位移时间序列。该方法用于监测Severn Suspension桥梁,在英国,揭示了GNS​​S在桥梁支撑塔,悬架电缆和甲板上的各个位置的特定时间间隔对桥梁响应的性能的增强。

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