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首页> 外文期刊>Aerospace and Electronic Systems, IEEE Transactions on >Spaceborne SIMO-SAR for three-dimensional ionospheric irregularity sounding
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Spaceborne SIMO-SAR for three-dimensional ionospheric irregularity sounding

机译:星载SIMO-SAR用于三维电离层不规则探测

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摘要

Ionospheric irregularity sounding is of significant importance in compensating for ionospheric scintillation effects on satellite communication, navigation, and remote sensing systems at lower frequencies, i.e., L band, P band, etc. A novel spaceborne nadir-looking single input and multiple outputs synthetic aperture radar (SAR) scheme is proposed for three-dimensional (3D) sounding of ionospheric irregularities. The 3D radar echo signal model is developed by examining the ionospheric effects on electromagnetic radar waveforms. These echoes can be used to produce 3D global maps of the distribution of ionospheric irregularities by means of a novel 3D SAR image formation algorithm. The effectiveness of the proposed SAR system was verified by means of computer simulations. The simulation results show that the proposed system has the capability to generate a 3D high-precision image of ionospheric irregularities with an altitude resolution as high as 0.9 km, an along-track resolution as high as 0.4 km, and an across-track angular resolution of 0.25 OOOBO;.
机译:电离层不规则探测对于补偿电离层闪烁对较低频率(即L波段,P波段等)对卫星通信,导航和遥感系统的影响至关重要。一种新颖的星载天底低点单输入多输出合成孔径针对电离层不规则性的三维(3D)探测,提出了一种雷达(SAR)方案。通过检查电离层对电磁雷达波形的影响来开发3D雷达回波信号模型。这些回波可以通过新颖的3D SAR图像形成算法用于生成电离层不规则性分布的3D全局图。通过计算机仿真验证了所提出的SAR系统的有效性。仿真结果表明,所提出的系统能够生成电离层不规则现象的3D高精度图像,其高度分辨率高达0.9 km,沿轨分辨率高达0.4 km,跨轨角分辨率的0.25 OOOBO;。

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