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A novel method of SAR terrain target scattering signal simulation

机译:SAR地形目标散射信号仿真的新方法

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Synthetic Aperture Radar (SAR) raw signal simulation is crucial for SAR system design and processing algorithms. This paper proposes the simulation method of SAR scattering signal of big area terrain target. At first, the SAR imaging principle is analyzed. Then, the space-borne SAR scenario model is constructed. The echoes of point target are calculated, which is impulse response of the SAR signal acquisition system. In tradition, the Radar Cross Section (RCS) simulation parameters of terrain target calculation is based on the scattering model expressions of a random roughness surface and the electromagnetic wave shadow theory. The approach of this communication utilizes the practical SAR SLC (Single Look Complex) or MGD (Multi-Look Ground-range Detected) image as terrain target backscattering coefficient, instead of the traditional method aforementioned. Then, 2D-FFT method is utilized to improve simulation efficiency significantly. The results of simulation prove the validity of the approach.
机译:合成孔径雷达(SAR)原始信号仿真对于SAR系统设计和处理算法至关重要。提出了大面积地形目标SAR散射信号的仿真方法。首先,分析了SAR成像原理。然后,构建了星载SAR情景模型。计算点目标的回波,这是SAR信号采集系统的脉冲响应。传统上,地形目标计算的雷达截面(RCS)模拟参数是基于随机粗糙表面的散射模型表达式和电磁波阴影理论。这种通信的方法利用实际的SAR SLC(单眼复杂)或MGD(多视距地面检测)图像作为地形目标后向散射系数,而不是上述传统方法。然后,利用2D-FFT方法来显着提高仿真效率。仿真结果证明了该方法的有效性。

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