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Performance Analysis of BDS Medium-Long Baseline RTK Positioning Using an Empirical Troposphere Model

机译:基于经验对流层模型的BDS中长期基线RTK定位性能分析

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摘要

For GPS medium-long baseline real-time kinematic (RTK) positioning, the troposphere parameter is introduced along with coordinates, and the model is ill-conditioned due to its strong correlation with the height parameter. For BeiDou Navigation Satellite System (BDS), additional difficulties occur due to its special satellite constellation. In fact, relative zenith troposphere delay (RZTD) derived from high-precision empirical zenith troposphere models can be introduced. Thus, the model strength can be improved, which is also called the RZTD-constrained RTK model. In this contribution, we first analyze the factors affecting the precision of BDS medium-long baseline RTK; thereafter, 15 baselines ranging from 38 km to 167 km in different troposphere conditions are processed to assess the performance of RZTD-constrained RTK. Results show that the troposphere parameter is difficult to distinguish from the height component, even with long time filtering for BDS-only RTK. Due to the lack of variation in geometry for the BDS geostationary Earth orbit satellite, the long convergence time of ambiguity parameters may reduce the height precision of GPS/BDS-combined RTK in the initial period. When the RZTD-constrained model was used in BDS and GPS/BDS-combined situations compared with the traditional RTK, the standard deviation of the height component for the fixed solution was reduced by 52.4% and 34.0%, respectively.
机译:对于GPS中长基线实时运动(RTK)定位,将对流层参数与坐标一起引入,并且由于该模型与高度参数的相关性强,因此该模型处于不良状态。对于北斗导航卫星系统(BDS),由于其特殊的卫星星座,还会出现其他困难。实际上,可以引入源自高精度经验天顶对流层模型的相对天顶对流层延迟(RZTD)。因此,可以提高模型强度,也称为RZTD约束的RTK模型。在此贡献中,我们首先分析影响BDS中长基线RTK精度的因素。此后,处理了在不同对流层条件下范围从38 km至167 km的15条基线,以评估RZTD约束的RTK的性能。结果表明,即使对仅BDS的RTK进行长时间滤波,对流层参数也很难与高度分量区分开。由于BDS对地静止轨道卫星的几何形状没有变化,歧义参数的长时间收敛时间可能会降低初始阶段GPS / BDS组合RTK的高度精度。与传统RTK相比,在BDS和GPS / BDS组合情况下使用RZTD约束模型时,固定解决方案的高度分量的标准偏差分别减少了52.4%和34.0%。

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