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STOCHASTIC ASSESSMENT OF GPS OBSERVATIONS FOR LEO RELATIVE NAVIGATION

机译:用于狮子座相对导航的GPS观测值的随机评估

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A more realistic stochastic model to GPS observations for LEO spacecraft relative navigation applications is formulated. This model considers the double-differencing introduced correlation between different channels, the correlation between different observation types, as well as temporal correlation of the measurements. The individual observation precision of each single channel is modelled using a predefined carrier-to-noise-power-density-ratio (C/N0) dependent model, which is more realistic than the usually used satellite elevation dependent model. This GPS observations stochastic model is presented in a form of covariance matrix which has been written as an unknown linear combination of known cofactor matrices. The coefficients of this linear combination are then assessed by an iterated reweighted least-squares variance component estimator. The efficiency of this estimator is investigated using data collected in a high-dynamics aircraft experiment and a zero-baseline experiment. Test results indicate that the precision of the estimated relative position and the randomness of the observation residuals are improved by applying the proposed stochastic model and assessment procedure.
机译:建立了一种针对LEO航天器相对导航应用的GPS观测的更现实的随机模型。该模型考虑了不同通道之间引入的双差分相关性,不同观测类型之间的相关性以及测量值的时间相关性。使用预定义的载波与噪声功率密度之比(C / N0)依赖性模型对每个单个通道的个体观测精度进行建模,该模型比通常使用的卫星仰角依赖性模型更为现实。该GPS观测随机模型以协方差矩阵的形式表示,该协方差矩阵已写为已知辅因子矩阵的未知线性组合。然后,通过迭代的重新加权最小二乘方差分量估计器来评估此线性组合的系数。使用在高动力飞机实验和零基线实验中收集的数据来研究此估算器的效率。测试结果表明,通过使用所提出的随机模型和评估程序,可以提高估计相对位置的精度和观测残差的随机性。

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