郭秋英, 郝光荣, 陈晓岩. 中长距离网络RTK大气延迟的Kriging插值方法研究[J]. 武汉大学学报 ( 信息科学版), 2012, 37(12): 1425-1428.
引用本文: 郭秋英, 郝光荣, 陈晓岩. 中长距离网络RTK大气延迟的Kriging插值方法研究[J]. 武汉大学学报 ( 信息科学版), 2012, 37(12): 1425-1428.
GUO Qiuying, HAO Guangrong, CHEN Xiaoyan. Kriging Interpolation for Atmospheric Delay of Medium-and Long-range Network-RTK[J]. Geomatics and Information Science of Wuhan University, 2012, 37(12): 1425-1428.
Citation: GUO Qiuying, HAO Guangrong, CHEN Xiaoyan. Kriging Interpolation for Atmospheric Delay of Medium-and Long-range Network-RTK[J]. Geomatics and Information Science of Wuhan University, 2012, 37(12): 1425-1428.

中长距离网络RTK大气延迟的Kriging插值方法研究

Kriging Interpolation for Atmospheric Delay of Medium-and Long-range Network-RTK

  • 摘要: 利用普通Kriging插值的指数函数模型和高斯函数模型,精密地实时估计网络RTK中用户站每一历元的大气延迟。利用一个含6个参考站的GPS网络(参考站间距为38.8~132.7km)的观测数据进行了实验,结果表明,对于长度为79.1km的基线的双差电离层延迟和双差对流层延迟,相应的Kriging插值(指数模型和高斯模型)的精度一般可达2cm和5cm,这表明普通Kriging插值可用于网络RTK用户站的大气延迟内插。

     

    Abstract: Based on ionospheric and tropospheric delay calculated through a GPS reference station network,ordinary Kriging interpolation with Exponential and Gaussian functional model was investigated to estimate epoch-by-epoch ionospheric and tropospheric delay respectively for network-RTK user station.A GPS reference network including six stations(baselines range from 38.8 km to 132.7 km) was used to test Kriging interpolation method.Experimental results show that approximate 2 cm and 5 cm interpolation accuracy respectively for ionospheric and tropospheric delay for a baseline of 79.1 km is achieved using ordinary Kriging interpolation,which indicates that ordinary Kriging(Exponential and Gaussian functional model) is suitable for atmospheric delay interpolation of user station in medium-and long-range network-RTK system.

     

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