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Detection of Ionospheric Structures with L-Band Synthetic Aperture Radars

机译:用L波段合成孔径雷达检测电离层结构

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Numerical simulations of low-latitude ionospheric instabilities show the formation of plasma density structures are can be detected by synthetic aperture radar (SAR) radio signals. At L-band, the phase front distortions produced by propagation through plasma "bubbles" should provide measurable changes in both the complex-amplitude and polarization waves from orbiting satellite radars. The diffraction pattern from scattered ground SAR signals can be detected by orbiting receivers. Based on reciprocity, ground radars at Kwajalein Atoll are being used to determine the feasibility of space-based detection of ionospheric density structures. This new measurement technique can provide a global data base of ionospheric data for space-weather models that predict the effects of the ionosphere on radio systems.
机译:低纬度电离层不稳定性的数值模拟显示通过合成孔径雷达(SAR)无线电信号检测等离子体密度结构的形成。在L波段,通过等离子体“气泡”传播产生的相位前畸形应在轨道卫星雷达中提供复杂幅度和偏振波的可测量变化。可以通过轨道接收器检测来自散射地SAR信号的衍射图案。基于互动的基础,Kwajalein环礁的地雷达用于确定基于空间的电离层密度结构的可行性。这种新的测量技术可以提供用于空间天气模型的全局数据库,用于预测电离层对无线电系统的影响。

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