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The Volumetric Imaging System for the Ionosphere (VISION)

机译:电离层(视觉)的体积成像系统

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The Volumetric Imaging System for the Ionosphere (VISION) is designed to use limb and nadir images to reconstruct the three-dimensional distribution of electrons over a 1000 km wide by 500 km high slab beneath the satellite with 10 km x 10 km x 10 km voxels. The primary goal of the VISION is to map and monitor global and mesoscale (> 10 km) electron density structures, such as the Appleton anomalies and field-aligned irregularity structures. The VISION consists of three UV limb imagers, two UV nadir imagers, a dual frequency Global Positioning System (GPS) receiver, and a coherently emitting three frequency radio beacon. The limb imagers will observe the O II 83.4 nm line (daytime electron density), O I 135.6 nm line (nighttime electron density and daytime O density), and the N_2 Lyman-Birge-Hopfield (LBH) bands near 143.0 nm (daytime N_2 density). The nadir imagers will observe the O I 135.6 nm line (nighttime electron density and daytime O density) and the N_2 LBH bands near 143.0 nm (daytime N_2 density). The GPS receiver will monitor the total electron content between the satellite containing the VISION and the GPS constellation. The three frequency radio beacon will be used with ground-based receiver chains to perform computerized radio tomography below the satellite containing the VISION. The measurements made using the two radio frequency instruments will be used to validate the VISION UV measurements.
机译:体积成像系统的电离层(VISION)被设计成使用肢体和最低点的图像来重建电子的超过1000公里宽的三维分布由高板坯500公里的卫星下方与10公里×10公里×10公里体素。在VISION的主要目标是映射和监测全球和中尺度(> 10公里)的电子密度的结构,如阿尔普顿异常和场对准的不规则结构。在VISION包括三个肢UV成像器,两个UV最低点成像器,双频全球定位系统(GPS)接收器和发射相干三个频率的无线电信标。肢体成像器将观察将O II 83.4纳米线(白天电子密度),OI 135.6纳米线(夜间电子密度和白天O密度),以及N_2莱曼 - 伯奇-的Hopfield(LBH)频带附近143.0纳米(白天N_2密度)。最低点的成像器将观察O I 135.6纳米线(夜间电子密度和白天O密度)和近143.0纳米(白天N_2密度)N_2 LBH频带。 GPS接收器将监测含有VISION卫星和GPS星座之间的电子总含量。三个频率的无线电信标将与基于地面的接收器链可用于含有VISION卫星下面执行计算机化射线断层。使用两个射频仪器进行的测量将被用于验证VISION UV测量。

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