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A simulation study into constructing of the sample space for ionospheric imaging

机译:电离层成像样本空间构建的仿真研究

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Ionospheric imaging usually involves solving an underdetermined inversion problem. The inversion is performed involving additional constraints to enforce realistic profiles in the vertical. One way to incorporate those vertical profile constraints is to perform the inversion using Empirical Orthogonal Functions (EOFs). The need of defining a sample space spanned by EOFs to obtain ionospheric images yields the possibility to employ ionosonde measurements in ionospheric tomography based on stochastic inversion of GPS data. Here we present a simulation study based on an existing network of GPS ground receivers and ionosondes across Europe. The locations of the transmitters used in the simulation are actual satellite positions. Simulated GPS data, constructed assuming that the ionosphere is the international reference ionosphere, are inverted via the Multi Instrument Data Analysis System. The sample space of this stochastic inversion is constructed employing ionosonde measurements simulated from the same model ionosphere. Such use of ionosonde data to construct the sample space produces better results than without ionosonde data. (c) 2005 Elsevier Ltd. All rights reserved.
机译:电离层成像通常涉及解决不确定的反演问题。进行反转时会涉及其他约束,以在垂直方向上强制执行实际轮廓。合并这些垂直轮廓约束的一种方法是使用经验正交函数(EOF)执行反演。需要定义由EOF跨越的样本空间以获得电离层图像,这使得有可能基于GPS数据的随机反演,在电离层层析成像中采用电离探空仪测量。在这里,我们基于整个欧洲现有的GPS地面接收器和离子探空仪网络,进行了仿真研究。模拟中使用的发射机的位置是实际卫星位置。假设电离层是国际参考电离层而构造的模拟GPS数据通过多仪器数据分析系统进行了反转。使用从同一模式电离层模拟的电离探空仪测量值构造这种随机反演的样本空间。与没有离子探空仪数据相比,使用离子探空仪数据构建样本空间会产生更好的结果。 (c)2005 Elsevier Ltd.保留所有权利。

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