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Comparison of polar formatting and back-projection algorithms for spotlight-mode SAR image formation

机译:极光格式化和反投影算法在聚光模式SAR图像形成中的比较

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The convolution/back-projection (CBP) algorithm has recently once again been touted as the "gold standard" for spotlight-mode SAR image formation, as it is proclaimed to achieve better image quality than the well-known and often employed polar formatting algorithm (PFA). In addition, it has been suggested that PFA is less flexible than CBP in that PFA can only compute the SAR image on one grid and PFA cannot add or subtract pulses from the imaging process. The argument for CBP acknowledges the computational burden of CBP compared to PFA, but asserts that the increased image accuracy and flexibility of the formation process is warranted, at least in some imaging scenarios. Because CBP can now be sped up by the proper algorithm design, it becomes, according to this line of analysis, the clear algorithm of choice for SAR image formation. In this paper we reject the above conclusion by showing that PFA and CBP achieve the same image quality, and that PFA has complete flexibility, including choice of imaging plane, size of illuminated beam area to be imaged, resolution of the image, and others. We demonstrate these claims via formation of both simulated and real SAR imagery using both algorithms.
机译:最近,卷积/反投影(CBP)算法再次被誉为聚光模式SAR图像形成的“黄金标准”,因为它被宣称比众所周知且经常采用的极坐标格式算法具有更好的图像质量。 (PFA)。另外,已经提出,PFA不如CBP灵活,因为PFA只能在一个栅格上计算SAR图像,而PFA不能在成像过程中添加或减去脉冲。关于CBP的论点承认与PFA相比,CBP的计算负担大,但断言至少在某些成像场景中,必须提高图像的准确性和形成过程的灵活性。由于现在可以通过适当的算法设计来加快CBP的速度,因此根据这一分析系列,它成为选择SAR图像的明确算法。在本文中,我们通过证明PFA和CBP获得相同的图像质量,并且PFA具有完全的灵活性,包括选择成像平面,要成像的照射光束区域的大小,图像的分辨率等,来拒绝上述结论。我们通过使用两种算法形成模拟和真实SAR图像来证明这些主张。

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