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On SAR processing using pixel-wise matched kernels

机译:关于使用逐像素匹配内核的SAR处理

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The recent increase in computing resources allows the emergence of new algorithms, the reappraisal of conventional algorithms, and even the reinvention of formerly computationally infeasible algorithms. This holds true for synthetic aperture radar (SAR) which is nowadays a widely-employed technology for imaging at distance in diverse operating conditions. In this paper, we discuss a formulation for SAR image reconstruction that involves no approximations. A unique kernel function is produced for each pixel of the image. The proposed principle of the kernel formation allows using a direct integral transform from a measured polar domain to a Cartesian image domain; no additional processing is required for any measurement geometry or the size of the image. This approach provides a well-defined premise for the implementation of other essential techniques, related to e.g. using robust waveform and compensating unexpected motion, which are vital for high-quality SAR images in unideal operating conditions. We illustrate our approach with simulated and measured inverse synthetic aperture radar (ISAR) experiments.
机译:最近计算资源的增加允许出现新算法,重新评估常规算法,甚至重新发明以前在计算上不可行的算法。对于合成孔径雷达(SAR)而言,这是正确的。如今,SAR是当今在多种操作条件下远距离成像的一项广泛使用的技术。在本文中,我们讨论了不包含近似值的SAR图像重建公式。为图像的每个像素产生唯一的内核函数。提出的核形成原理允许使用从测得的极域到笛卡尔图像域的直接积分变换。不需要任何测量几何形状或图像大小的额外处理。这种方法为实施其他必不可少的技术(例如与之相关的技术)提供了明确定义的前提。使用鲁棒的波形并补偿意外的运动,这对于在非理想的工作条件下获得高质量的SAR图像至关重要。我们通过模拟和测量的逆合成孔径雷达(ISAR)实验来说明我们的方法。

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