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Impacts of Flowing Ionospheric Irregularities on L-band Geosynchronous SAR Azimuth Imaging

机译:流动的电离层不规则对L波段地球同步SAR方位角成像的影响

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Ionospheric scintillation due to small-scale ionospheric irregularities tends to cause significant azimuth decorrelation for the L-band geosynchronous synthetic aperture radar (GEO SAR) system. Generalized ambiguity function (GAF) is employed to evaluate potential impacts of the ionospheric irregularities on GEO SAR azimuth imaging. For GEO SAR, due to the slow scanning of the ionospheric penetration point (IPP) during the ultra-long integration time, the convection velocity of the flowing ionospheric irregularities cannot be neglected any longer, which is specifically taken into account for a more accurate formulation of GAF. Finally, the theoretical model is validated via numerical calculations and Monte Carlo simulations.
机译:由于小规模电离层不规则性引起的电离层闪烁趋向于引起L波段地球同步合成孔径雷达(GEO SAR)系统的显着方位解相关。广义模糊函数(GAF)用于评估电离层不规则对GEO SAR方位角成像的潜在影响。对于GEO SAR,由于在超长积分时间内电离层穿透点(IPP)的扫描速度很慢,因此不能再忽略流动的电离层不规则现象的对流速度,这是为了更精确地公式化而专门考虑的GAF。最后,通过数值计算和蒙特卡洛模拟对理论模型进行了验证。

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