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Dynamic multipath in structural bridge monitoring: an experimental approach

机译:结构桥梁监测中的动态多径:一种实验方法

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摘要

Vehicles such as passing trains produce significant short-term biases in coordinates of nearby GPS stations, preventing these coordinates from being used for structural monitoring of bridges. In order to study this problem, we carried out experiments with receivers recording at 100 Hz and located on both sides of a rail next to passing trains. The experiments focused on trains with similar characteristics and velocity. The analysis of the data revealed a short-duration bias in coordinates with amplitude up to 10 cm and high spectral frequencies. This bias is not due to wrong integer ambiguity fixing, software defects, and changing geometry of satellites and it does not significantly improve with the addition of GLONASS satellites. It is partly due to temporary blocking of certain satellites by passing vehicles and a dynamic multipath due to fast-moving, near-field reflective surfaces. This dynamic multipath seems to depend on the geometry of satellites and to be characterized by a shift of coordinates during the whole interval of the vehicle passage, as well as by very short-period coordinate fluctuations which are related to specific morphological characteristics of the train reflective surfaces. The amplitude of the dynamic multipath is smaller in the horizontal coordinates, which are also characterized by a clearer pattern than the vertical coordinates. On the basis of the above results, certain strategies for the modeling of the dynamic multipath are proposed.
机译:诸如过往列车之类的车辆会在附近的GPS站的坐标中产生明显的短期偏差,从而阻止将这些坐标用于桥梁的结构监测。为了研究这个问题,我们进行了实验,以100 Hz的频率记录接收器,该接收器位于铁路两侧,靠近通过的火车。实验着重于具有相似特性和速度的火车。数据分析表明,坐标的短时偏差最大幅度为10 cm,光谱频率较高。这种偏差不是由于错误的整数歧义修复,软件缺陷以及卫星的几何形状变化引起的,并且不会因添加GLONASS卫星而得到明显改善。这部分是由于某些人造卫星被车辆暂时挡住而造成的,以及由于快速移动的近场反射面而造成的动态多径。这种动态多径似乎取决于卫星的几何形状,其特征在于在车辆通过的整个时间间隔内坐标发生位移,以及与列车反射镜的特定形态特征有关的非常短的坐标波动表面。动态多径的幅度在水平坐标中较小,水平坐标也具有比垂直坐标更清晰的特征。基于以上结果,提出了动态多径建模的某些策略。

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