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Calibration of polarimetric radar images using only image parameters and trihedral corner reflector responses

机译:仅使用图像参数和三面角反射器响应来校准偏振雷达图像

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摘要

A technique that uses the radar return from natural targets and at least one trihedral corner reflector to calibrate compressed polarimetric radar data is described. Calibration for relative amplitude, relative phase, absolute amplitude, and system crosstalk is addressed. The crosstalk calibration method is based on the theoretical result that for natural targets with azimuthal symmetry the copolarized and crosspolarized components of the scattering matrix are uncorrelated, and the method does not require any external calibration targets to be deployed before imaging. Because compressed data are used, one is forced to model the transmitting and receiving systems as reciprocal. Even though the inferred transmit and receive matrices are not each simply related to the physical transmitter and receiver, the true Stokes matrix for each pixel in an image can be accurately determined by this approach. The method is illustrated by estimating the crosstalk parameters of the NASA/JPL aircraft for different types of terrain and for two frequencies. For the C-band system, the crosstalk is less than -20 dB for all ranges in the images. The crosstalk of the L-band system is a function of range, however, and may be as poor as -10 dB in the near range, leading to a noticeable distortion of the polarization signatures.
机译:描述了一种使用从自然目标返回的雷达和至少一个三面角反射器来校准压缩极化雷达数据的技术。解决了相对幅度,相对相位,绝对幅度和系统串扰的校准问题。串扰校准方法基于以下理论结果:对于具有方位角对称性的自然目标,散射矩阵的同极化和交叉极化分量是不相关的,并且该方法不需要在成像之前部署任何外部校准目标。由于使用了压缩数据,因此人们不得不将发送和接收系统建模为互惠的。即使推断的发送和接收矩阵并非都与物理发送器和接收器简单相关,通过此方法也可以准确确定图像中每个像素的真实斯托克斯矩阵。通过针对不同类型的地形和两个频率估算NASA / JPL飞机的串扰参数来说明该方法。对于C波段系统,图像中所有范围的串扰均小于-20 dB。但是,L波段系统的串扰是范围的函数,并且在近距离范围内可能差至-10 dB,从而导致极化特征的明显失真。

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