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A survey of ionospheric effects on space-based radar

机译:电离层对天基雷达影响的调查

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摘要

In this survey, we fully review almost all potential ionospheric effects on the performance of space-based radar systems (SBRs), which operate in the ambient ionosphere environment; in particular, we review the use of space-based synthetic aperture radar systems (SARs) for imaging. There are two families of effects involved. One is the effects of the background ionosphere (non-turbulent ionosphere), such as dispersion, group delay, refraction, Faraday rotation, and phase shift. The other is the effects due to ionospheric irregularities, such as refractive index fluctuation, phase perturbation, angle-of-arrival fluctuation, pulse broadening, clutter, and amplitude scintillation. These effects adversely affect SAR imaging in several respects, such as by causing image shift in the range, and degradations of the range resolution, azimuthal resolution, and/or the resolution in height (elevation). We also review ionospheric irregularity characteristics and descriptions, propagation channel statistics, received signal statistics, and detection performance of SBRs in ionospheric scintillation situations. First, a brief outline of SBR systems and principles, and theories of wave propagation in random media, especially some effects caused by two-way propagation, is given. Finally, several of the most probable directions of future research are pointed out.
机译:在本次调查中,我们全面回顾了几乎所有电离层对在周围电离层环境中运行的天基雷达系统(SBR)的性能的影响;特别是,我们回顾了天基合成孔径雷达系统(SAR)在成像中的使用。涉及两个效果家族。一种是背景电离层(非湍流电离层)的影响,例如色散,群延迟,折射,法拉第旋转和相移。另一个是由于电离层不规则性而产生的影响,例如折射率波动,相位扰动,到达角波动,脉冲展宽,杂波和振幅闪烁。这些影响在几个方面都会对SAR成像产生不利影响,例如,引起范围内的图像偏移以及范围分辨率,方位分辨率和/或高度分辨率(高程)的下降。我们还将回顾电离层不规则特征和描述,传播通道统计数据,接收信号统计数据以及电离层闪烁情况下SBR的检测性能。首先,简要概述了SBR系统和原理以及随机介质中的波传播理论,尤其是双向传播引起的一些影响。最后,指出了未来研究的几个最可能的方向。

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