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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing. >Phase Calibration Based on Phase Derivative Constrained Optimization in Multibaseline SAR Tomography
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Phase Calibration Based on Phase Derivative Constrained Optimization in Multibaseline SAR Tomography

机译:多相SAR层析成像中基于相位导数约束优化的相位校准

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This paper deals with the compensation of phase miscalibration in the general context of tomographic synthetic aperture radar image focusing. Phase errors are typically independent of one acquisition to the other, thus leading to a spreading and defocusing in the multidimensional (3-D, 4-D, and 5-D) imaging space. Coping with this problem in presence of volumetric scattering is generally a complex issue. In this paper, we consider the approach for phase calibration characterized by the advantage, with respect to classical phase calibration algorithms, of not requiring either the identification of a reference target or specific assumptions about the unknown phase function, or a priori information about the terrain topography. The novelty of the proposed phase miscalibration estimation and compensation method is related to its ability to avoid unwanted and uncontrollable vertical shifts in the focused image. The estimation of the calibration phase is performed by optimizing the contrast or the entropy of the vertical profile with the constraint of a zero phase derivative. Such a constraint preserves the output height distribution. Experimental results of simulated and real data are included to demonstrate the effectiveness of the proposed method.
机译:本文在断层成像合成孔径雷达图像聚焦的一般情况下,解决了相位失调的补偿问题。相位误差通常独立于一个采集,而导致在多维(3-D,4-D和5-D)成像空间中散布和散焦。在存在体积散射的情况下解决该问题通常是一个复杂的问题。在本文中,我们考虑了一种相对于经典相位校准算法而言具有优势的相位校准方法,该方法既不需要识别参考目标或关于未知相位函数的特定假设,也不需要关于地形的先验信息地形。所提出的相位失调估计和补偿方法的新颖性与它避免聚焦图像中不必要的和不可控制的垂直偏移的能力有关。通过在零相位导数的约束下优化垂直轮廓的对比度或熵来执行校准相位的估计。这样的约束保留了输出高度分布。仿真和真实数据的实验结果也包括在内,以证明所提方法的有效性。

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