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Performance of SAR Polarimetric Calibration Using Hybrid Corner Reflectors: Numerical Simulations and Experimental Measurements

机译:使用混合拐角反射器的SAR偏振校准性能:数值模拟和实验测量

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摘要

In this article, we devise a polarimetric calibration method utilizing only three types of calibration targets, i.e., trihedral, dihedral, and a 22.5°-rotated dihedral corner reflectors and requiring no assumptions on the scene statistics. The influence of the roll angle in a 22.5°-rotated dihedral corner reflector is assessed by a full-wave numerical simulation. The effectiveness and accuracy of the method are verified with a ground-based synthetic aperture radar system and an airborne L-band Pi-SAR data. We demonstrate that an amplitude error as low as 0.5 dB and a phase error within 3° can be achieved, showing an excellent agreement between the theoretical and calibrated polarimetric signatures for the reference targets. We further exploit the calibration on the Pauli decomposition, Yamaguchi four-component decomposition, and the estimation of the polarimetric parameters derived from target scattering vector method decomposition to show the superior performance of the devised calibration method.
机译:在本文中,我们设计了仅使用三种类型的校准靶标,即TriHedral,Dihedral和22.5° - 横射的二向角落反射器,并且在场景统计中不需要假设。通过全波数值模拟评估辊角在22.5°的二向角反射器中的影响。该方法的有效性和准确性用基于地基的合成孔径雷达系统和空降L带PI-SAR数据验证。我们证明,可以实现低至0.5dB的幅度误差和在3°内的相位误差,在参考目标的理论和校准的偏振符号之间显示出优异的一致性。我们进一步利用了Pauli分解的校准,yamaguchi四分组分分解,并估计从目标散射矢量方法分解导出的偏振参数,以显示设计的校准方法的卓越性能。

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