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首页> 外文期刊>Journal of Geodesy >On the determination of the effect of horizontal ionospheric gradients on ranging errors in GNSS positioning
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On the determination of the effect of horizontal ionospheric gradients on ranging errors in GNSS positioning

机译:确定水平电离层梯度对GNSS定位中测距误差的影响

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摘要

An alternative approach to the traditionally employed method is proposed for treating the ionospheric range errors in transionospheric propagation such as for GNSS positioning or satellite-borne SAR. It enables the effects due to horizontal gradients of electron density (as well as vertical gradients) in the ionosphere to be explicitly accounted for. By contrast with many previous treatments, where the expansion of the solution for the phase advance is represented as the series in the inverse frequency powers and the main term of the expansion corresponds to the true line-of-sight distance from the transmitter to the receiver, in the alternative technique the zero-order term is the rigorous solution for a spherically layered ionosphere with any given vertical electron density profile. The first-order term represents the effects due to the horizontal gradients of the electron density of the ionosphere, and the second-order correction appears to be negligibly small for any reasonable parameters of the path of propagation and its geometry for VHF/UHF frequencies. Additionally, an "effective" spherically symmetric model of the ionosphere has been introduced, which accounts for the major contribution of the horizontal gradients of the ionosphere and provides very high accuracy in calculations of the phase advance.
机译:提出了一种替代传统方法的方法,用于处理跨电离层传播中的电离层范围误差,例如用于GNSS定位或星载SAR。它可以明确考虑电离层中由于电子密度的水平梯度(以及垂直梯度)引起的影响。与许多以前的处理方法相反,将相位超前的解的扩展表示为逆频率功率的级数,并且扩展的主要项对应于从发射机到接收机的真实视线距离在另一种技术中,零阶项是具有任意给定垂直电子密度分布的球形层电离层的严格解。一阶项表示电离层电子密度的水平梯度引起的影响,而二阶校正对于VHF / UHF频率的传播路径及其几何形状的任何合理参数而言似乎很小。另外,已经引入了电离层的“有效”球形对称模型,该模型解释了电离层水平梯度的主要贡献,并且在相位超前的计算中提供了非常高的准确性。

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