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Analyzing the Precision and Regional Modeling Method of Tropospheric Delay Based on Multi-base Station GPS Observations

机译:基于多基站GPS观测的对流层延迟精度和区域建模方法分析

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Tropospheric delay is one of the main factors that affect obtaining a higher precision of long-distance RTK. In order to optimize the tropospheric delay modeling method and obtain a higher positioning precision, this paper uses the measured zenith tropospheric delay data of BJFS and URUM station to calculate the tropospheric zenith delay and RMS of four classical tropospheric delay correction models, the precision and applicability of classical model are analyzed, Hopfield model and Saastamoinen model have a higher precision. But for high precision baseline solution, the precision can not meet the requirements. Therefore, the GPS measurement method based on multi-base station GPS network is adopted. In order to analyze the factors that should be considered in the model, the tropospheric delay of several CORS stations calculated by a classical model is compared and analyzed. It is concluded that there is a positive correlation between the tropospheric delay and elevation, which provides evidence for modeling. And the applicability of several regional modeling methods is theoretically analyzed. The best method to choose base stations of multi-base station modeling is analyzed by several experiments and it is concluded that when the base station is laid in the mountainous area with gentle troposphere change, it should take into account the uniformity of the plane position distribution of the station under the condition of giving priority to the regional elevation range. By this way, the model can reflect regional characteristics better and obtain a higher degree of precision. And the precision and applicability of region modeling method of tropospheric delay is studied through three experimental networks. The tropospheric delay modeling methods based on multi-base station GPS observations obtained in this paper will obtain a higher degree of precision and a better applicability with regional range reducing. In different regions, the different method of tropospheric delay modeling should be chosen. In small-sized and medium-sized areas with gentle tropospheric change, the H1QM3 is the most suitable model for tropospheric delay calculation and the precision is better than 1 cm.
机译:对流层延迟是影响更高距离RTK精度的主要因素之一。为了优化对流层延迟建模方法并获得更高的定位精度,采用测量的Zenith对流层延迟数据的BJF和乌鲁木站的延迟数据,以计算了四种古典对流层延迟校正模型的对流层延迟和RMS,精度和适用性分析了古典模型,Hopfield模型和Saastamoinen模型具有更高的精度。但对于高精度基线解决方案,精度不能满足要求。因此,采用了基于多基站GPS网络的GPS测量方法。为了分析模型中应考虑的因素,比较并分析了通过经典模型计算的几个CORS站的对流层延迟。结论是,对流层延迟和高度之间存在正相关,这提供了建模的证据。理论上分析了几种区域建模方法的适用性。通过多个实验分析了多基站建模基站的最佳方法,结论是当基站铺设在具有温和对流层变化的山区时,应该考虑平面位置分布的均匀性该站在优先考虑区域海拔范围的条件下。通过这种方式,该模型可以更好地反映区域特征并获得更高程度的精度。研究了对流层延迟的精度和适用性,通过三个实验网络研究了对流层延迟。基于多基站GPS观测的对流层延迟建模方法将获得更高程度的精度和更好地适用于区域范围减少。在不同的区域中,应选择不同的对流层延迟建模方法。在具有温和的对流层变化的小型和中等区域,H1QM3是对流层延迟计算的最合适的模型,精度优于1厘米。

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