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A Fast 3-D Imaging Method for Circular SAR Based on 3-D Back-Projection Algorithm

机译:基于3-D返回投影算法的圆形SAR快速3-D成像方法

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Circular SAR (CSAR) is a typical 3-D imaging model of SAR. 3-D back-projection (BP) algorithm is a common time-domain 3-D imaging method for CSAR. However, 3-D imaging with back-projection algorithm has high algorithm complexity and low efficiency for processing pulse by pulse and grid by grid. This paper proposes a new fast 3-D imaging method for CSAR based on 3-D back-projection algorithm. In this method, 3-D interpolation and phase compensation operations can be transformed into 1-D interpolation and phase compensation operations and matrix searching operations with the construction of a geometric interpolation kernel. This proposed method can greatly improve imaging efficiency of CSAR when the error range allows. The simulated experimental results can prove the correctness and effectiveness of the proposed method.
机译:圆形SAR(CSAR)是SAR的典型3-D成像模型。 3-D后投影(BP)算法是CSAR的常见时域3-D成像方法。然而,3-D与背投算法的成像具有高算法复杂性和低效率,用于通过网格处理脉冲和网格的脉冲。本文提出了一种基于3-D次投影算法的CSAR的新快速3-D成像方法。在该方法中,可以将3-D插值和相位补偿操作转换为1-D插值和相位补偿操作和矩阵搜索操作,并施加几何插值内核。当误差范围允许时,这种提出的方​​法可以大大提高CSAR的成像效率。模拟实验结果可以证明所提出的方法的正确性和有效性。

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