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A Fast Full-Wave Simulation Method for Characterization of Deeply Buried Targets in Bistatic SAR Imaging

机译:一种快速全波仿真方法,用于对BISTATIC SAR成像中深埋目标的表征

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摘要

In this letter, a hybrid analytical and numerical simulation method is presented for the time-efficient calculation of bistatic scattering from the buried targets. This computation is used for a fixed transmitter and target location but for a moving receiver to generate the data set for a 3-D synthetic aperture radar (SAR) simulation. In this method, initially, the current distribution on the target when illuminated by the transmitter (in the absence of the receiver) is calculated. Then, the receiver is used as a transmitter and its field is calculated everywhere in the lower half-space. The reciprocity is then used to find the open-circuit voltage across the receiver terminals due to the equivalent current distribution on the target. This approach substitutes N full-wave simulations for N sampling points required in SAR imaging with two simulations leading only to a factor of N/2 reduction in the simulation time. The proposed method is validated by comparing it with the brute-force full-wave simulation method as well as by image reconstruction from the data set generated by the method.
机译:在这封信中,提出了一种混合分析和数值模拟方法,用于从埋地靶的双孔散射计算的时间效率计算。该计算用于固定发射器和目标位置,而是用于移动接收器以生成用于3-D合成孔径雷达(SAR)仿真的数据集。在该方法中,最初,计算由发射机照射时目标的电流分布(在不存在接收器中)。然后,接收器用作发射器,其字段在下半部隙中的任何位置计算。然后,由于目标上的等效电流分布,因此使用倒数在接收器端子上发现开路电压。这种方法替代N个全波模拟SAR成像中所需的N个采样点,其两个模拟仅导致模拟时间的N / 2减少的因子。通过与Brute-Force全波仿真方法(通过由所述方法生成的数据集的图像重建)将其与Brute-Force全波仿真方法进行验证,验证该方法。

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