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Rapid initialization method in real-time deformation monitoring of bridges with triple-frequency BDS and GPS measurements

机译:利用三频BDS和GPS测量进行桥梁变形实时监测的快速初始化方法

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Rapid initialization with ambiguity fixed resolution plays a key role in real-time Global Navigation Satellite Systems (GNSS) displacement monitoring of bridges. In this study, we propose a rapid initialization method with triple-frequency (TF) BeiDou Navigation Satellite System (BDS) and Global Positioning System (GPS) observations. The key step of this method is to form extra-wide-lane (EWL) ambiguity with TF BDS and GPS carrier-phase to reduce the ambiguity search space. In order to improve the speed of ambiguity resolution (AR) further, the strategies of fixing ambiguities in groups sequentially from long wavelength to the short and partial AR (PAR) with elevation and signal-to-noise ratio (SNR) criterions were proposed. Based on the real monitoring data on the Baishazhou Yangtze River Bridge, the AR efficiency was tested. The results illustrate that over 90% EWL ambiguities can be fixed by only single-epoch with TF BDS + GPS. After EWL ambiguity is fixed, the wide-lane (WL) ambiguity success rate could improve from 20% with dual-frequency (DF) BDS + GPS data to 70% with TF BDS + GPS data, 50-80% and 80-90% for the three stations respectively. Since the area of ambiguity search space is reduced by TF observations, the ambiguity search time decrased significantly compared with the DF BDS + GPS. In the Time-to-first-fix (TTFF) test, over 85% of epochs can complete the initialization process by only one epoch with one hour of 10 Hz TF BDS GPS data. However, DF BDS + GPS has only 25%. As for the initialization time longer than two epochs, the counts of TTFFs of TF BDS + GPS are significantly less than that of DF BDS + GPS. Meanwhile, the integrated BDS and GPS can further enhance the geometry of satellites, which will be better for the precision improvement than the increase of signal frequencies. (C) 2018 COSPAR. Published by Elsevier Ltd. All rights reserved.
机译:具有不确定性的固定分辨率的快速初始化在桥梁的实时全球导航卫星系统(GNSS)位移监控中起着关键作用。在这项研究中,我们提出了一种利用三频(TF)北斗导航卫星系统(BDS)和全球定位系统(GPS)观测值的快速初始化方法。该方法的关键步骤是与TF BDS和GPS载波相位形成超宽带(EWL)模糊度,以减少模糊度搜索空间。为了进一步提高歧义度(AR)的速度,提出了使用高程和信噪比(SNR)准则从长波长到短AR和部分AR(PAR)依次固定组中歧义的策略。根据白沙洲长江大桥的真实监测数据,对AR效率进行了测试。结果表明,仅使用TF BDS + GPS的单时间段可以解决超过90%的EWL模糊性。修复EWL歧义后,宽频(WL)歧义成功率可以从双频(DF)BDS + GPS数据的20%提高到TF BDS + GPS数据的70%,50-80%和80-90三个站的百分比。由于TF观测减少了歧义搜索空间的面积,因此与DF BDS + GPS相比,歧义搜索时间大大缩短了。在首次定位时间(TTFF)测试中,超过85%的时间段可以用一个小时的10 Hz TF BDS GPS数据完成一个小时的初始化过程。但是,DF BDS + GPS仅占25%。至于初始化时间超过两个纪元,TF BDS + GPS的TTFF计数明显少于DF BDS + GPS的TTFF计数。同时,集成的BDS和GPS可以进一步增强卫星的几何形状,这比信号频率的增加更能提高精度。 (C)2018年COSPAR。由Elsevier Ltd.出版。保留所有权利。

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