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Co-polarization channel imbalance determination by the use of bare soil

机译:利用裸露土壤确定同极化通道失衡

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This paper describes a novel technique which determines the co-polarization channel imbalance by the use of natural bare soil, instead of a trihedral corner reflector (CR). In polarimetric synthetic aperture radar (PolSAR) remote sensing, the polarimetric calibration (PolCAL) is the key technique in quantitative earth parameter measurement. In general, the current PolCAL process can be separated into two parts. The first part tries to estimate the crosstalk and the cross-polarization (x-pol) channel imbalance components by the reflection symmetry and the reciprocity properties, without a CR. Then, at least one trihedral CR is required to determine the co-polarization (co-pol) channel imbalance; however, it is not always possible to deploy a CR in difficult terrain such as desert. In this paper, we utilize bare soil as a stable reference target, and four common natural constraints of bare soil are evaluated to determine the co-pol channel imbalance, without the use of a CR. It should be mentioned that we do not propose to replace the CR by a natural target, but we utilize the natural target to enhance the PolCAL accuracy when a CR is missing. The four constraints are: (1) the consistency of the polarimetric orientation angle (CPOA) between the PolSAR POA and the digital elevation model (DEM) derived POA; (2) the unitary zero POA (UZPOA) of a flat ground surface; (3) the zero helix (ZHEX) component of the ground surface; and (4) the unitary version of the previous zero helix (UZHEX). In the theoretical part of this paper, we demonstrate that the forth constraint is the most suitable in different scenes. We then propose a multi-scale algorithm to further improve the robustness of the co-pol channel imbalance determination. In the experimental part, we apply our new methods to simulated airborne SAR (AIRSAR) and real uninhabited aerial vehicle SAR (UAVSAR) data. Without the use of any CR, the recovered results show that the estimated amplitude and phase error of the co-pol channel imbalance are less than 0.5 dB and 5°, respectively.
机译:本文介绍了一种新技术,该技术可通过使用天然裸露的土壤代替三面角反射器(CR)来确定共极化通道的不平衡。在极化合成孔径雷达(PolSAR)遥感中,极化校准(PolCAL)是定量地球参数测量的关键技术。通常,当前的PolCAL流程可以分为两部分。第一部分试图在没有CR的情况下通过反射对称性和互易性来估计串扰和交叉极化(x-pol)信道的不平衡分量。然后,需要至少一个三面体CR来确定共极化(co-pol)通道不平衡;但是,并非总是可能在沙漠等困难的地形上部署CR。在本文中,我们将裸土用作稳定的参考目标,并且在不使用CR的情况下,评估了四种常见的裸土自然约束条件来确定co-pol通道失衡。应该提到的是,我们不建议用自然目标代替CR,但是当缺少CR时,我们会利用自然目标来提高PolCAL的准确性。这四个约束是:(1)PolSAR POA与数字高程模型(DEM)得出的POA之间的极化取向角(CPOA)的一致性; (2)平坦地面的单一零POA(UZPOA); (3)地表的零螺旋(ZHEX)分量; (4)前一个零螺旋(UZHEX)的单一形式。在本文的理论部分,我们证明了第四约束最适合于不同场景。然后,我们提出了一种多尺度算法,以进一步提高co-pol信道不平衡确定的鲁棒性。在实验部分,我们将我们的新方法应用于模拟机载SAR(AIRSAR)和实际无人飞行器SAR(UAVSAR)数据。在不使用任何CR的情况下,恢复的结果表明,co-pol信道不平衡的估计幅度和相位误差分别小于0.5 dB和5°。

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