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首页> 外文期刊>Atmospheric Measurement Techniques >Electron density profiles probed by radio occultation of FORMOSAT-7/COSMIC-2 at 520 and 800 km altitude
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Electron density profiles probed by radio occultation of FORMOSAT-7/COSMIC-2 at 520 and 800 km altitude

机译:在520和800 km高度通过FORMOSAT-7 / COSMIC-2的无线电掩埋探测电子密度分布

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The FORMOSAT-7/COSMIC-2(F7/C2) will ultimately place 12 satellites in orbit with two launches with 24-28.5 degrees inclination and 520-550 km altitude in 2016 and with 72 ffi inclination and 720-750 km altitude in 2018. It would be very useful for the community to construct the global three-dimensional electron density structure by simultaneously combining the two launch observations for studying ionospheric structure and dynamics. However, to properly construct the global electron density structure, it is essential to know and evaluate differences between the ionospheric electron densities probed by the two launches. To mimic the F7/C2 observations, we examine the electron density probed at the two satellite altitudes 500 and 800 km by means of FORMOSAT-3/COSMIC (F3/C) observations at the parking orbit 500 km altitude and mission orbit 800 km altitude, as well as a corresponding observing system simulation experiment (OSSE). Observation and OSSE results show that the sounding geometries by satellite orbiting at 500 and 800 km altitudes can cause the overall differences in the electron density, the F2 peak electron density, and the F2 peak height of about 18-24, 12-28 %, and 7-19 km, respectively. Results confirm that the discrepancies mainly result from the sounding geometry and the grid (contour) bias of the electron density.
机译:FORMOSAT-7 / COSMIC-2(F7 / C2)最终将在2016年将12颗卫星送入轨道,两次发射的倾角为24-28.5度,高度为520-550 km,2018年发射为72 ffi倾角,高度为720-750 km通过同时结合两个发射观测资料来研究电离层结构和动力学,对社区构建全球三维电子密度结构将非常有用。但是,要正确构建整体电子密度结构,必须了解和评估两次发射探测到的电离层电子密度之间的差异。为了模拟F7 / C2观测,我们通过驻车轨道500 km和任务轨道800 km的FORMOSAT-3 / COSMIC(F3 / C)观测,检查了在两个卫星高度500和800 km探测到的电子密度,以及相应的观测系统仿真实验(OSSE)。观测和OSSE结果表明,卫星在500和800 km高度绕轨道运行时的探测几何形状可能导致电子密度,F2峰值电子密度和F2峰值高度的整体差异大约为18-24、12-28%,和7-19公里。结果证实,差异主要是由探测密度和电子密度的网格(轮廓)偏差引起的。

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