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High Precision Surface Reconstruction Based on Coherent Near Field Synthetic Aperture Radar Scans

机译:基于相干近场合成孔径雷达扫描的高精度表面重建

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This paper describes the development of a method using the phase information of an 80 GHz 3D synthetic aperture radar for high precision surface reconstruction. At first, an introduction of theory of phase unwrapping methods is given. Furthermore, the chosen unwrapping algorithm is discussed and applied to one range bin of a complex valued data cube, generated by an 80 GHz 3D synthetic aperture radar with a bandwidth of 25 GHz. Additionally, a method for phase unwrapping is proposed in case of objects crossing several range bins. The impact of diffraction and refraction on the reconstructed surface is discussed. To evaluate the resolution limits, the height profile is extracted and analyzed, resulting in a range resolution better than 50 μm. Finally, material imaging results are shown to underline the potential of the presented method for commercial radar imaging systems.
机译:本文介绍了一种使用80 GHz 3D合成孔径雷达的相位信息进行高精度表面重建的方法的开发。首先,介绍了相位解缠方法的理论。此外,讨论了所选的解包算法并将其应用于复数值数据立方体的一个范围箱,该复数数据立方体是由带宽为25 GHz的80 GHz 3D合成孔径雷达生成的。另外,提出了一种在物体跨越几个测距箱的情况下用于相位展开的方法。讨论了衍射和折射对重建表面的影响。为了评估分辨率极限,提取并分析了高度轮廓,从而获得了优于50μm的范围分辨率。最后,材料成像结果表明该方法可用于商业雷达成像系统。

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