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Analysis of Background Ionospheric Effects on Geosynchronous SAR Imaging

机译:背景电离层对地球同步SAR成像的影响分析

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摘要

Background ionospheric propagation effects are adverse to the performance of Geosynchronous Synthetic Aperture Radar (GEO SAR) system. This paper focuses on the background ionospheric phase advance, which can be modelled as a function of Slant Total Electron Content (STEC). The dispersive feature of the phase advance caused by the background ionosphere could be able to distort the GEO SAR range-imaging. Furthermore, for GEO SAR, the integration time is ultra-long and the coverage is ultra-large, thus temporal and spatial distributions of the background ionosphere have to be taken into account. The resultant ionospheric phase variations might decorrelate the azimuth signal and then lead to azimuth-imaging deteriorations. In this paper, the theoretical model of the background ionospheric effects on GEO SAR imaging is established and in-depth analyses are presented. Finally, theoretical analyses are validated by the signal-level simulation.
机译:电离层的背景传播效应不利于地球同步合成孔径雷达(GEO SAR)系统的性能。本文着重于背景电离层相位超前,可以将其建模为倾斜总电子含量(STEC)的函数。由背景电离层引起的相位超前的色散特征可能会使GEO SAR距离成像失真。此外,对于GEO SAR,积分时间超长,覆盖范围超大,因此必须考虑背景电离层的时空分布。产生的电离层相位变化可能会解相关方位角信号,然后导致方位角成像恶化。本文建立了背景电离层对GEO SAR成像的理论模型,并进行了深入分析。最后,通过信号电平仿真验证了理论分析。

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