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Application of adaptive optics to scintillation correction in phased array high-frequency radar

机译:自适应光学在相控阵高频雷达闪烁校正中的应用

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摘要

At high frequency, diffraction during ionospheric propagation can yield wavefronts whose amplitude and phase fluctuate over the physical dimensions of phased array radars such as those of the Super Dual Auroral Radar Network (SuperDARN). Distortion in the wavefront introduces amplitude and phase scintillation into the geometric beamformed signal while reducing radar performance in terms of angular resolution and achieved array gain. A scintillation correction algorithm based on adaptive optics techniques is presented. An experiment conducted using two SuperDARN radars is presented that quantifies the effect of wavefront distortion and demonstrates a reduction in observed scintillation and improvement in radar performance post scintillation correction.
机译:在高频下,电离层传播过程中的衍射会产生波前,其波幅和相位会在相控阵雷达(例如超级双极光雷达网络(SuperDARN))的物理尺寸上波动。波前的失真将幅度和相位闪烁引入到几何波束形成的信号中,同时降低了雷达在角度分辨率和获得的阵列增益方面的性能。提出了一种基于自适应光学技术的闪烁校正算法。提出了使用两个SuperDARN雷达进行的实验,该实验量化了波前畸变的影响,并证明了观测到的闪烁减少以及闪烁校正后雷达性能的提高。

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