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Multivariate analysis of combined GPS/GLONASS point positioning performance in Brazilian regions under different ionospheric conditions

机译:不同电离条件下巴西地区GPS / GLONASS点定位性能的多变量分析

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The development of Global Navigation Satellite Systems (GNSS) was a revolution in activities related to positioning. Currently, GLONASS (Globalhaya Navigatsionnaya Sputnikovaya Sistema) and GPS (Global Positioning System) are the main systems with full constellation. The use of GPS and GLONASS combined data gained renewed attention after the GLONASS restoration and modernization plan, which enabled the system to reach full constellation in 2011. In addition to the use of combined data, several other factors can influence positioning quality, such as the methods applied and errors that can affect the transmitted signals. Concerning errors, the ionosphere is an important source, particularly for users of single frequency receivers. This requires special attention, because, in addition to degradation of positioning accuracy, there is a great interdependency between signal loss and ionospheric irregularities, such as ionospheric scintillation. In this paper, multivariate analysis techniques were applied to investigate the influence of ionospheric activity, specifically ionospheric scintillation, in positioning error. An experiment was carried out applying the point positioning method considering stations located in different places during periods of high and low ionospheric activity. The results showed high similarity between GPS and GLONASS data and significant ionosphere influence in the positioning error. S4 indexes presented correlations higher than 0.75 when considering GPS and GLONASS data. Positioning error using GPS or GPS/GLONASS data presented correlations higher than 0.93 for all stations considered. Techniques such as clustering, correspondence analysis and factor analysis were also applied in this study.
机译:全球导航卫星系统(GNSS)的发展是与定位有关的活动的革命。目前,Glonass(GlobalHaya Navigatsionnaya Sputnikovaya Sistema)和GPS(全球定位系统)是全星座的主要系统。在GLONASS恢复和现代化计划后,GPS和GLONASS组合数据的使用增长了重新关注,使系统能够在2011年到达全包。除了使用组合数据,其他几个因素可以影响定位质量,如应用方法和可能影响传输信号的错误。关于误差,电离层是一个重要的来源,特别是对于单频接收器的用户。这需要特别注意,因为除了定位精度的劣化之外,信号损耗和电离层不规则之间存在很大的相互依赖性,例如电离层闪烁。本文采用多变量分析技术来研究离电离子活性,特异性电离层闪烁在定位误差中的影响。在高离电离子活性期间考虑位于不同地方的电视台的点定位方法进行实验。结果表明GPS和Glonass数据之间的高度相似,并且定位误差中的显着电离层影响。 S4索引在考虑GPS和Glonass数据时呈现高于0.75的相关性。使用GPS或GPS / GLONASS数据的定位误差呈现高于0.93的相关电台的相关性。在本研究中也适用于聚类,对应分析和因子分析等技术。

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