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GNSS Array-Based Ionospheric Spatial Gradient Monitoring: Precision and Integrity Analysis

机译:基于GNSS阵列的电离层空间梯度监测:精度和完整性分析

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Integrity monitoring and reliable detection of the ionospheric spatial gradient is of importance for various fields including total electron content modeling, radio communication and radar, and differential GNSS applications such as landing, departure and surface operations at an airport. In this contribution, we investigate the precision and the integrity of the ionospheric spatial gradient estimation upon the double-differenced (DD) array-based GNSS model of observations. Closed-form expressions for the variance matrix of the ionospheric spatial gradient and the corresponding uniformly most powerful invariant (UMPI) minimal detectable biases (MDBs) are provided for different scenarios, through which we assess the importance of several contributing factors. The closed-form expressions will show that the precision of the ionospheric spatial gradient estimator and its detectability are independent of our choice for the reference receiver and the reference satellite when forming the DD equations. In this contribution it will be shown how the precision of the estimated ionospheric spatial gradient and its MDB depend on and benefit from the number of receivers, number of satellites, number of frequencies, and the size and geometry of the array.
机译:完整性监测和可靠地检测电离层空间梯度对于包括全电子含量建模,无线电通信和雷达的各种领域具有重要性,以及机场在机场的着陆,出发和表面操作等差分GNSS应用。在这一贡献中,我们研究了对基于双差(DD)阵列的GNSS模型的电离层空间梯度估计的精度和完整性。对于不同的场景,提供了电离层空间梯度的横向矩阵和相应的均匀最强大的不变(UMPI)最小可检测偏差(MDB)的闭合形式表达式,我们通过该方案提供了几种贡献因素的重要性。闭合形式表达将显示电离层空间梯度估计器的精度及其可检测性与我们在形成DD方程时对参考接收器和参考卫星的选择无关。在这方面的贡献将示出所估计的电离层的空间梯度的精度和其MDB如何取决于并受益于接收器的数量,卫星的数目,频率数,并且阵列的尺寸和几何形状。

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