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Polarimetric Synthetic Aperture Radar Imaging With Radially Polarized Antennas

机译:具有径向偏振天线的极化合成孔径雷达成像

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摘要

A polarimetric 3-D synthetic aperture radar (SAR) imaging method using a radially polarized antenna is described. The advantages of the radially polarized antenna, mainly that polarimetric SAR imaging can be performed without requiring additional measurements compared to traditional SAR, are discussed. A general target model is developed that includes information about target orientation and degree of polarization (i.e., how well and in what direction the target polarizes a signal). Image reconstruction algorithms were developed to allow polarimetric imaging to be performed with radially polarized antenna imaging data, enabling the estimation of target orientation and degree of polarization. The effect of scan step size and scan aperture size is studied on the accuracy of the estimation of these parameters, and guidelines were established as to the proper step size and scan aperture size to be used to keep estimation error below a specific threshold. Subsequently, a radially polarized antenna was designed, fabricated, and used to image several samples containing various types of point targets, by which the capability of this technique to enable accurate estimation of target orientation and degree of polarization is successfully demonstrated.
机译:描述使用径向偏振天线的偏振3-D合成孔径雷达(SAR)成像方法。讨论了与传统SAR相比,可以在不需要额外测量的情况下进行径向偏振天线的优点,主要是在不需要额外测量的情况下进行。开发了一般目标模型,其包括关于目标方向和极化程度的信息(即,目标偏振信号的方向的程度)。显影图像重建算法以允许利用径向偏振天线成像数据执行偏振成像,从而能够估计目标方向和极化程度。研究了扫描台尺寸和扫描光圈大小的效果,对这些参数的估计的精度研究,并且建立了准则,以适当的步长和扫描光圈尺寸以用于保持估计误差低于特定阈值。随后,设计,制造,制造径向偏振天线,并用于图像含有各种类型的点目标的若干样本,通过该样本,通过该样本能够成功地证明能够精确地估计目标方向和极化程度的能力。

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