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A mixed-mode GPS network processing approach for deformation monitoring applications

机译:用于变形监测应用的混合模式GPS网络处理方法

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摘要

The Global Positioning System (GPS) can be utilised in a wide range of deformation monitoring applications, such as the monitoring of active volcanoes, tectonic fault lines, landslides, ground subsidence, bridges, dams, high-rise buildings, etc. During the past few years a methodology has been developed for processing data collected by GPS networks consisting of a mixed set of single-frequency and dual-frequency receivers. The strategy is to deploy a few permanent, 'fiducial' GPS stations with dual-frequency, geodetic-grade receivers surrounding an 'inner' network of low-cost, single-frequency GPS receivers. Such a configuration offers considerable flexibility and cost savings for deformation monitoring applications, which require a dense spatial coverage of GPS stations, and where it is not possible, nor appropriate, to establish permanent GPS networks using dual-frequency instrumentation.udThe basis of the processing methodology is to separate the dual-frequency, 'fiducial' station data processing from the baseline processing involving the inner (single-frequency) receivers located in the deformation zone. The data processing for the former is carried out using a modified version of the Bernese software, to generate a file of 'corrections' (analogous to Wide Area DGPS correction models for the distance dependent biases - primarily due to atmospheric refraction). These 'corrections' are then applied to the double-differenced phase observations from the inner receivers to improve the single-frequency baseline accuracies (primarily through empirical modelling of the residual atmospheric biases that otherwise would be neglected). udThis configuration has been tested by simulating such a two-stage network using data collected by part of the Southern California Integrated GPS Network (SCIGN). Six sites forming an inner network of three GPS receivers surrounded by three 'fiducial' GPS receivers are used in this study. All sites are equipped with dual-frequency instrumentation, however, for most of the analysis the inner sites are treated as single-frequency stations by ignoring the observations made on L2. A description of the processing strategy, together with a discussion of the results is presented.
机译:全球定位系统(GPS)可用于各种变形监测应用中,例如监测活火山,构造断层线,滑坡,地面沉降,桥梁,水坝,高层建筑等。几年来,已经开发出一种方法来处理由GPS网络收集的数据,该GPS网络由一组单频和双频接收机组成。该策略是在一些低成本,单频GPS接收器的“内部”网络周围部署一些永久性的“基准” GPS站,并采用双频大地测量级接收器。这种配置为变形监测应用程序提供了相当大的灵活性,并节省了成本,这些应用程序需要GPS站的密集空间覆盖,并且在不可能,也不适合使用双频仪器建立永久性GPS网络的地方。处理方法是将双频,“基准”台站数据处理与涉及位于变形区内的内部(单频)接收器的基准处理分开。前者的数据处理是使用Bernese软件的修改版进行的,以生成“校正”文件(类似于基于距离的偏差的广域DGPS校正模型-主要是由于大气折射)。然后,将这些“校正”应用于来自内部接收器的双差相位观测,以改善单频基线精度(主要是通过对残余大气偏差的经验建模,否则将被忽略)。 ud已使用南加州综合GPS网络(SCIGN)的一部分收集的数据模拟这样的两阶段网络,对该配置进行了测试。这项研究使用了六个站点,形成了由三个GPS接收器包围的三个GPS接收器的内部网络。所有站点都配备了双频仪器,但是,对于大多数分析,通过忽略对L2的观察,将内部站点视为单频站。介绍了处理策略的说明以及结果的讨论。

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    Janssen V; Rizos C;

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  • 年度 2003
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