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首页> 外文期刊>Acta geodynamica et geomaterialia >COMPREHENSIVE ASSESSMENT OF POSITIONING AND ZENITH TOTAL DELAY RETRIEVAL USING GPS plus GLONASS PRECISE POINT POSITIONING
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COMPREHENSIVE ASSESSMENT OF POSITIONING AND ZENITH TOTAL DELAY RETRIEVAL USING GPS plus GLONASS PRECISE POINT POSITIONING

机译:使用GPS Plus Glonass精确点定位综合评估定位和Zenith总延迟检索

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摘要

Since October 2011, the Russian GLObal NAvigation Satellite System (GLONASS) has been revitalized and is now fully operational with 24 satellites in orbit. It is critical to assess the benefits and problems of using GLONASS observations (i.e. GLONASS-only or combined Global Positioning System (GPS) and GLONASS) for precise positioning and zenith total delay (ZTD) retrieval on a global scale using precise point positioning (PPP) technique. In this contribution, extensive evaluations are conducted with Global Navigation Satellite System (GNSS) data sets collected from 251 globally distributed stations of the International GNSS Service (IGS) network in July 2016. The stations are divided into 30 groups by antenna/radome types to investigate whether there are antenna/radome-dependent biases in position and ZTD derived from GLONASS-only PPP. The positioning results do not show obvious antenna/radome-dependent biases except the stations with JAV_RINGANT_G3T/NONE. For these stations, the averaged biases in horizontal component, especially in the north component, can achieve as high as -9.0 mm. The standard deviation (STD) and root mean square (RMS) are used as indicators of positioning repeatability and accuracy, respectively. The averaged horizontal STD and RMS of GLONASS-only PPP are comparable to GPS-only PPP, while in vertical component, those for GLONASS-only PPP are larger. Furthermore, the STD and RMS of GPS+GLONASS combined PPP solutions are the smallest in horizontal and vertical components, indicating that adding GLONASS observations can achieve better positioning performance than GPS-only PPP. With the IGS final ZTD as reference, we find that ZTD biases and accuracy of GLONASS-only are latitude-and antenna/radome-independent. The ZTD accuracy of GLONASS-only PPP is slightly worse than that of GPS-only PPP. Compared with GPS-only PPP, the ZTD accuracy is only improved by 1.3% from 7.8 to 7.7 mm by adding GLONASS observations.
机译:自2011年10月以来,俄罗斯全球导航卫星系统(Glonass)已被振兴,现在与轨道中的24个卫星完全运行。评估使用GLONASS观测的益处和问题是至关重要的(即,使用精确点定位在全球范围内的精确定位和天顶的总延迟(ZTD)检索(PPP )技术。在这一贡献中,通过从2016年7月从国际GNSS服务(IGS)网络的251个全球分布站收集的全球导航卫星系统(GNSS)数据集进行了广泛的评估。该站通过天线/ radome类型分为30组调查是否有天线/ radome依赖于位的位置和ZTD的偏见,源自Glonass--onl-PPP。除了具有Jav_ringant_G3T / None的电台之外,定位结果不会显示出明显的天线/无差异偏差。对于这些站,水平部件中的平均偏差,特别是在北部件中,可以高达-9.0 mm。标准偏差(STD)和根均线(RMS)分别用作定位重复性和准确性的指标。平均水平STD和Glonass--of PPP的RMS与仅用于GPS的PPP相当,而在垂直组件中,仅用于GLONASS-PPP的PPP更大。此外,GPS + Glonass的STD和RMS组合PPP解决方案中最小的水平和垂直部件,表明添加Glonass观察可以实现比仅GPS的PPP更好的定位性能。使用IGS Final ZTD作为参考,我们发现ZTD偏差和Glonass的准确性 - 仅是纬度和天线/无关的无关。仅GLONASS--PPP的ZTD精度比GPS-ONLE PPP略差。与仅GPS的PPP相比,通过添加Glonass观测,ZTD精度仅从7.8%提高了1.3%到7.7 mm。

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