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A fast physical optics (FPO) algorithm for double-bounce scattering

机译:快速物理光学(FPO)算法用于双反弹散射

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The fast physical optics (FPO) method for computing back-scattered fields over ranges of aspect angles and frequencies is extended to encompass double-bounce scattering. Computations are performed within the framework of the physical optics approximation appropriate in the high-frequency regime. The proposed algorithm is directly applicable to fixed angle bistatic configurations and a variety of double scattering settings. The method comprises two steps: 1) decomposition of the scatterer into subscatterers and computation of the scattering amplitudes of all pairs of subscatterers and 2) interpolation, phase correction, and aggregation of the scattering amplitude patterns of all subscatterer pairs into the pattern of the entire scatterer. The proposed method is especially suited for generating synthetic data for radar imaging simulations.
机译:用于计算纵横比和频率范围内的反向散射场的快速物理光学(FPO)方法已扩展为涵盖双反弹散射。在适合于高频状态的物理光学近似框架内进行计算。所提出的算法直接适用于固定角度双基地配置和各种双重散射设置。该方法包括两个步骤:1)将散射体分解为子散射体,并计算所有对子散射体的散射幅度; 2)内插,相位校正,并将所有子散射体对的散射幅度模式聚集为整个模式散射体。所提出的方法特别适合于生成用于雷达成像仿真的合成数据。

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