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Least-Squares Variance Component Estimation Applied to GPS Geometry-Based Observation Model

机译:最小二乘方差分量估计在基于GPS几何的观测模型中的应用

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摘要

To achieve the best linear unbiased estimation of unknown parameters in geodetic data processing a realistic stochastic model for observables is required. This work is a follow-up to work carried out recently in which the geometry-free observation model (GFOM) was used. Here, least-squares variance component estimation is applied to global positioning system (GPS) observables using the geometry-based observation model (GBOM). The benefit of using GBOM, rather than GFOM, is highlighted in the present contribution. An appropriate stochastic model for GPS observables should include different variances for each observation type, the correlation between different observables, the satellite elevation dependence of the observables' precision, and the temporal correlation of the GPS observables. Unlike the GFOM, in the GBOM two separate variances along with their corresponding covariances are simultaneously estimated for the phase observations of the L1 and L2 frequencies. The numerical results for two receivers-namely, Trimble 4000 SSi (Trimble Navigation, Sunnyvale, California) and Leica SR530 (Leica Geosystems, Aarau, Switzerland)-indicate a significant correlation between the observation types. The results show positive correlations of 0.55 and 0.51 between the CA and P2 code observations for Trimble 4000 SSi and Leica SR530, respectively. In addition, the satellites' elevation dependence of the GPS observables' precision is remarkable. Also, a temporal correlation of about 10 s exists in the L2 GPS observables for the Trimble 4000 SSi receiver.
机译:为了在大地测量数据处理中实现未知参数的最佳线性无偏估计,需要一个可观测的现实随机模型。这项工作是最近进行的工作的后续工作,其中使用了无几何观察模型(GFOM)。在这里,使用基于几何的观测模型(GBOM)将最小二乘方差分量估计应用于全球定位系统(GPS)观测值。在本文稿中突出显示了使用GBOM而不是GFOM的好处。 GPS观测值的适当随机模型应包括每种观测类型的不同方差,不同观测值之间的相关性,观测值精度的卫星仰角依赖性以及GPS观测值的时间相关性。与GFOM不同,在GBOM中,同时估计两个单独的方差及其对应的协方差以用于L1和L2频率的相位观测。 Trimble 4000 SSi(加利福尼亚州桑尼维尔的Trimble Navigation)和Leica SR530(瑞士阿劳的Leica Geosystems)的两个接收器的数值结果表明了观测类型之间的显着相关性。结果表明,Trimble 4000 SSi和Leica SR530的CA和P2代码观察值之间分别呈0.55和0.51正相关。此外,卫星对GPS观测值精度的仰角依赖性也很显着。此外,Trimble 4000 SSi接收机的L2 GPS观测值中存在约10 s的时间相关性。

著录项

  • 来源
    《Journal of surveying engineering》 |2013年第4期|176-187|共12页
  • 作者单位

    Dept. of Surveying Engineering, Faculty of Engineering, Univ. of Isfahan, Hezar-Zerib Ave., 8174673441 Isfahan, Iran and Acoustic Remote Sensing Group (ACRS), Faculty of Aerospace Engineering, Delft Univ. of Technology, Kluyverweg 1, 2629 HS, Delft, Netherlands;

    Dept. of Surveying Engineering, Faculty of Engineering, Univ. of Isfahan, Hezar-Zerib Ave., 8174673441 Isfahan, Iran;

    Dept. of Surveying Engineering, Faculty of Engineering, Univ. of Isfahan, Hezar-Zerib Ave., 8174673441 Isfahan, Iran;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Least-squares variance component estimation; GPS geometry-based model; GPS observable precision;

    机译:最小二乘方差分量估计;基于GPS几何的模型;GPS观测精度;

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