Evaluation of the impact of ionospheric asymmetry on GNSS Radio Occultation inversion products using NeQuick and IRI

M. Shaikh, R. Notarpietro
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引用次数: 2

Abstract

`Onion-peeling' algorithm is a very common technique used to invert Radio Occultation (RO) data in the ionosphere. Because of the implicit assumption of spherical symmetry for the electron density distribution in the ionosphere, the standard Onion-peeling algorithm could give erroneous concentration values in the retrieved electron density profile. In particular, this happens when strong horizontal ionospheric electron density gradients are present, like for example in the Equatorial Ionization Anomaly (EIA) region during high solar activity periods. In this work, using simulated RO TEC data computed by means of the NeQuick2 and IRI2012 ionospheric electron density models and ideal RO geometries, we tried to formulate and evaluate an asymmetry level indicator for quasi-horizontal radio occultation observations. This asymmetry index is based on the electron density variation that a ray may experience along its propagation path (satellite to satellite link) in a RO event. This index is dependent on the occultation geometry and on the azimuth of the occultation plane. Our qualitative assessment shows a good correlation between our asymmetry index and Onion-peeling retrieval errors; i.e. errors produced by Onion-peeling in the retrieval of NmF2 and VTEC are larger at the geographical locations where our asymmetry index indicates high asymmetry in the ionosphere.
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利用NeQuick和IRI评估电离层不对称对GNSS无线电掩星反演产品的影响
“洋葱剥离”算法是一种非常常用的技术,用于反演电离层中的射电掩星(RO)数据。由于对电离层中电子密度分布的隐式假设是球对称的,标准的洋葱剥离算法可能会在反演的电子密度分布图中给出错误的浓度值。特别是,当存在强烈的水平电离层电子密度梯度时,就会发生这种情况,例如在太阳活动高峰期的赤道电离异常(EIA)区域。本文利用NeQuick2和IRI2012电离层电子密度模型和理想RO几何模型计算的RO TEC模拟数据,试图建立和评估准水平射电掩星观测的不对称水平指标。这种不对称指数是基于反渗透事件中射线沿其传播路径(卫星到卫星链路)可能经历的电子密度变化。这个指数取决于掩星的几何形状和掩星平面的方位角。我们的定性评价表明,我们的不对称指数与洋葱去皮检索误差有很好的相关性;即,在我们的不对称指数表明电离层高度不对称的地理位置,洋葱剥离在NmF2和VTEC反演中产生的误差更大。
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