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网络RTK对流层拟合模型分析
引用本文:琚兴华.网络RTK对流层拟合模型分析[J].测绘科学,2012(1):182-184.
作者姓名:琚兴华
作者单位:河南省有色金属地质矿产局第一地质大队
摘    要:为了拟合网络RTK中用户端双差对流层延迟,本文分析了基于距离的线性内插模型(DIM)、线性内插模型(LIM)原理,提出了指数拟合模型:以主参考站为原点,系数项与用户端和辅参考站间夹角成反比,指数底数值为0.35,用户端到主参考站与辅参考站到主参考站间距离比值被1减为指数。通过分析上述模型的误差系数给出了模型优缺点,试验验证了指数模型的有效性和稳定性:卫星拟合精度一般优于2cm,实现了单历元平面定位精度优于2cm,高程精度优于3cm。

关 键 词:双差对流层延迟  基于距离的线性内插模型  线性内插模型  指数模型

Fitting model of tropospheric delay in network RTK
Institution:QU Xing-hua(No.1 Geological Party of Henan Provincial Non-ferrous Metal and Geological and Mineral Resources Bureau,Zhengzhou 450016,China)
Abstract:In order to mitigate double-difference tropospheric delay for the user station from the reference stations,this paper compared the interpolation methods in detail,and described EXPonential model as follows:the master station as the origin,the coefficients is inversely proportional to the angle between the user station and the reference station,exponential constant value is 0.35,the ratio between the distances of the user station to the master and the reference station to the master reduced by 1 as exponential parameter.The advantages and disadvantages of DIM and LIM were discussed on coefficients from the reference stations.Test data from CORS of one city was used to evaluate the performance of the interpolation methods.The numerical results showed that the proposed exponential model could significantly reduce the double-difference tropospheric delay at the user station,the interpolation accuracy could be better than 2cm,the one epoch position accuracy of plane and height could be better than 2 cm and 3 cm.
Keywords:double-difference tropospheric delay  Distance-based Linear Interpolation Method(DIM)  Linear Interpolation Method(LIM)  EXPonential model(EXP)
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