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Ionospheric tomography by combining vertical and oblique sounding data with TEC retrieved from a tri-band beacon

机译:通过组合垂直和倾斜探测数据与从三频信标获取的TEC进行电离层层析成像

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摘要

The development of the tri-band beacon brings hope to the high-resolution computerized ionospheric tomography (CIT) imaging. This is a major motivation for the proposed launch of a Chinese satellite carrying as a key payload a tri-band beacon for seismological studies. Due to the limited-angle geometry, the vertical precision of CIT still needs to be improved to meet the requirements of some applications, such as monitoring the ionospheric behaviors before earthquakes. To solve this problem, this paper puts forward a new bi-iteration method, which combines vertical and oblique sounding data with the total electron content (TEC) retrieved from an onboard tri-band beacon of a planned Chinese satellite for seismological studies transmitting VHF, UHF, and L-band frequencies. A ground-based high-resolution ionospheric observation network was built in northern China in April 2009. Based on this ground network and the planned satellite, high-resolution ionospheric structures can be reconstructed in real time for monitoring the ionospheric precursors of earthquakes over several seismic belts in northern China. The numerical simulations show that electron density distributions reconstructed from the three-frequency TEC are significantly improved after incorporating observation data of the ground-based vertical and oblique ionograms. Here, the oblique sounding data are assimilated in the CIT for the first time. The results in this paper help to ensure that the measurements to be made by this solid network will yield their potential.
机译:三频信标的发展为高分辨率计算机电离层层析成像(CIT)成像带来了希望。这是拟议中的中国卫星发射的主要动机,该卫星将作为主要载荷的三频信标用于地震研究。由于有限的角度几何形状,CIT的垂直精度仍需要提高以满足某些应用的要求,例如在地震发生前监测电离层的行为。为了解决这个问题,本文提出了一种新的双向迭代方法,该方法将垂直和倾斜探测数据与计划中的中国卫星的三频信标从机载三频信标中获取的总电子含量(TEC)结合起来,用于发射VHF的地震研究, UHF和L波段频率。 2009年4月,在中国北方建立了地面高分辨率电离层观测网络。基于该地面网络和计划中的卫星,可以实时重建高分辨率电离层结构,以监测几次地震的电离层前兆。中国北方的皮带。数值模拟表明,在结合了地面垂直和倾斜电离图的观测数据后,从三频TEC重建的电子密度分布得到了显着改善。在这里,倾斜的探测数据是第一次在CIT中被同化。本文中的结果有助于确保通过该实体网络进行的测量将发挥其潜力。

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