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A Novel 3D Imaging Method for Airborne Downward-Looking Sparse Array SAR Based on Special Squint Model

机译:基于特殊斜视模型的机载向下看稀疏阵列SAR的新型3D成像方法

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摘要

Three-dimensional (3D) imaging technology based on antenna array is one of the most important 3D synthetic aperture radar (SAR) high resolution imaging modes. In this paper, a novel 3D imaging method is proposed for airborne down-looking sparse array SAR based on the imaging geometry and the characteristic of echo signal. The key point of the proposed algorithm is the introduction of a special squint model in cross track processing to obtain accurate focusing. In this special squint model, point targets with different cross track positions have different squint angles at the same range resolution cell, which is different from the conventional squint SAR. However, after theory analysis and formulation deduction, the imaging procedure can be processed with the uniform reference function, and the phase compensation factors and algorithm realization procedure are demonstrated in detail. As the method requires only Fourier transform and multiplications and thus avoids interpolations, it is computationally efficient. Simulations with point scatterers are used to validate the method.
机译:基于天线阵列的三维(3D)成像技术是最重要的3D合成孔径雷达(SAR)高分辨率成像模式之一。本文基于成像几何和回声信号的特性,提出了一种新颖的3D成像方法,用于空气传播的羽绒向阵列SAR。所提出的算法的关键点是在交叉轨道处理中引入特殊的斜视模型,以获得精确的聚焦。在这种特殊的斜视模型中,具有不同交叉轨道位置的点目标在相同的范围分辨率单元处具有不同的斜视角,其与传统的斜面SAR不同。然而,在理论分析和配方扣除之后,可以用均匀的参考功能处理成像过程,并详细说明相位补偿因子和算法实现过程。由于该方法仅需要傅里叶变换和乘法,因此避免了插值,因此计算上有效。使用点散射器的模拟用于验证该方法。

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