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A Phase Calibration Method Based on Phase Gradient Autofocus for Airborne Holographic SAR Imaging

机译:基于相位梯度自动聚焦的机载全息SAR成像相位校准方法

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摘要

Holographic synthetic aperture radar tomography can realize full 3-D reconstructions of objects over 360 degrees with very high resolution, and thus becomes an interesting 3-D imaging technique. However, due to the uncompensated platform motion errors, phase errors among different tracks usually exist in this imaging mode, which will hinder the 3-D image focusing. In this letter, a phase calibration method based on phase gradient autofocus is proposed to mitigate the influence of these phase errors. It exploits the space-invariant characteristic of the phase errors in a limited scene and uses an efficient and robust multibaseline autofocus to calibrate the phase errors among the multiple circular tracks. Experimental results with the GOTCHA real data are carried out to demonstrate the validity and feasibility of the proposed method.
机译:全息合成孔径雷达层析成像可以以非常高的分辨率实现360度以上对象的完整3D重建,因此成为一种有趣的3D成像技术。然而,由于未补偿的平台运动误差,在这种成像模式下通常存在不同轨迹之间的相位误差,这将阻碍3-D图像聚焦。在本文中,提出了一种基于相位梯度自动聚焦的相位校准方法,以减轻这些相位误差的影响。它利用有限场景中相位误差的空间不变特性,并使用高效且强大的多基线自动对焦功能来校准多个圆形轨道之间的相位误差。用GOTCHA真实数据进行实验,证明了该方法的有效性和可行性。

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