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Ionospheric effects on SAR imaging: a numerical study

机译:电离层对SAR成像的影响:一项数值研究

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There has been an increasing interest in the use of spaceborne very high frequency ultra high frequency (VHF-UHF) synthetic aperture radar (SAR) for measuring forest biomass and for detecting underground facilities. The propagation characteristics of the low-frequency electromagnetic wave are severely affected by the ionosphere. Recently, Faraday rotation effects and SAR image degradation have been studied using an analytical model and a homogeneous ionosphere. In this paper, a numerical model is developed to investigate the SAR image degradation caused by an inhomogeneous ionosphere. Both horizontal and vertical structures of the ionosphere are considered in this model. Three different cases are studied. The first is a vertically homogenous ionosphere, where the simulation condition is the same as in the analytical study by Ishimaru and others. The second is a vertical profile, which is introduced using the Chapman formula. The ray-bending effect is added for the ionosphere with a layered structure. Finally, both the vertical profile in electron density and the horizontal gradient in total electron content are considered in the simulation. Simulation results show good agreement with the theoretical analysis under the same conditions of the ionosphere. When both horizontal and vertical structures and the inhomogeneity of the ionosphere are considered in the model, the simulation result shows further image degradation and shift caused by the ray-bending effect. The simulation results also show the strong frequency dependence of the SAR image resolution.
机译:人们越来越关注使用星载甚高频超高频(VHF-UHF)合成孔径雷达(SAR)来测量森林生物量和检测地下设施。低频电磁波的传播特性受到电离层的严重影响。最近,已经使用解析模型和均匀电离层研究了法拉第旋转效应和SAR图像退化。本文建立了一个数值模型来研究非均匀电离层引起的SAR图像退化。该模型考虑了电离层的水平和垂直结构。研究了三种不同的情况。第一个是垂直均匀的电离层,其模拟条件与Ishimaru等人的分析研究相同。第二个是垂直剖面,使用查普曼公式引入。对于具有分层结构的电离层增加了射线弯曲效果。最后,在模拟中考虑了电子密度的垂直分布和总电子含量的水平梯度。模拟结果与电离层相同条件下的理论分析吻合良好。当在模型中同时考虑水平和垂直结构以及电离层的不均匀性时,仿真结果表明,由于射线弯曲效应而导致的图像进一步退化和偏移。仿真结果还表明,SAR图像分辨率具有很强的频率依赖性。

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