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首页> 外文期刊>Measurement Science & Technology >Low-cost, 4-system, precise GNSS positioning: a GPS, Galileo, BDS and QZSS ionosphere-weighted RTK analysis
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Low-cost, 4-system, precise GNSS positioning: a GPS, Galileo, BDS and QZSS ionosphere-weighted RTK analysis

机译:低成本,4系统,精确的GNSS定位:GPS,Galileo,BDS和QZSS对电离层加权RTK分析

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With the combination of emerging GNSSs, single-frequency (SF) precise RTK positioning becomes possible. In this contribution we evaluate such low-cost ublox receiver and antenna performance when combining real data of four CDMA systems, namely L1 GPS, E1 Galileo, L1 QZSS, and B1 BDS. Comparisons are made to more expensive dual-frequency (DF) GPS receivers and antennas. The formal and empirical ambiguity success rates and positioning precisions will first be evaluated while making use of L1+E1, so as to investigate whether instantaneous SF RTK is possible without the need of B1 BDS or L1 QZSS. This is followed by an analysis of the SF 4-system model performance when the residual ionosphere can be ignored and modeled as a function of the baseline length, respectively. The analyses are conducted for a location in Dunedin, New Zealand, and compared to Perth, Australia with the better visibility of BDS and QZSS. The results indicate that successful instantaneous and precise RTK positioning is feasible while using L1 GPS and E1 Galileo data, and that the SF 4-system model is competitive to DF GPS even when residual ionospheric delays are present. We finally demonstrate that when the impact from the ionosphere increases and more than one epoch is needed for successful ambiguity resolution, the SF 4-system model performance can still remain competitive with the DF GPS receivers. This is particularly true in Perth with more satellites and when higher than customary elevation cut-off angles need to be used to avoid low-elevation multipath.
机译:随着新兴GNSSS的组合,可以进行单频(SF)精确的RTK定位。在这一贡献中,我们在组合四个CDMA系统的实际数据时,评估如此低成本的UBLOX接收器和天线性能,即L1 GPS,E1 Galileo,L1 QZS和B1 BDS。对更昂贵的双频(DF)GPS接收器和天线进行比较。首先在使用L1 + E1的同时首先评估正式和经验模糊的成功率和定位精度,以研究是否可以在没有B1 BDS或L1 QZS的情况下进行瞬时SF RTK。随后是分析残留电离层的SF 4系统模型性能分别,分别作为基线长度的函数进行忽略和建模。该分析是在达尼丁,新西兰的一个位置进行,与澳大利亚珀斯相比,BDS和QZS的可见度更好。结果表明,使用L1 GPS和E1伽利略数据的同时,成功的瞬时和精确的RTK定位是可行的,并且即使存在残留电离层延迟,SF 4系统模型也与DF GPS具有竞争力。我们终于证明,当来自电离层的影响和成功的歧义分辨率需要多于一个时期时,SF 4系统模型性能仍然可以与DF GPS接收器保持竞争力。在珀斯具有更多卫星的阶段和当高于常规升高的截止角度时尤其如此,以避免低升高多径。

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