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Three-Dimensional Point Spread Function Characterization of a Radially Displaced Scatterer

机译:径向位移散射体的三维点扩展函数表征

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摘要

For synthetic aperture radar (SAR) systems utilizing a circular aperture for target recognition, it is important to know how a target's point spread function (PSF) behaves as a function of various radar functional parameters and target positional changes that may occur during data collection. The purpose of this research is characterizing the three dimensional (3D) point spread function (3D PSF) behavior of a radially displaced point scatterer for circular synthetic aperture radar (CSAR). For an automatic target recognition (ATR) systems requiring target identification with a high degree of confidence, CSAR processing represents a viable alternative given it can produce images with resolution less than a wavelength. With very large CSAR apertures (90° or more) three dimensional imaging is possible with a single phase center and a single pass. Using a backprojection image formation process, point target PSF responses are generated at various target locations at a given radar bandwidth, depression angle and full 360° CSAR apertures. Consistent with previous studies, the 3D PSF for a point target located at the image center is cone shaped and serves as the basis for comparing and characterizing the 3D PSFs for radially displaced scatterers. For radially displaced point target, simulated results show 3D PSF response is asymmetric and tends to become an elliptic shape.
机译:对于利用圆形孔径进行目标识别的合成孔径雷达(SAR)系统,了解目标的点扩展函数(PSF)如何作为各种雷达功能参数和数据收集期间可能发生的目标位置变化的函数非常重要。这项研究的目的是表征圆形合成孔径雷达(CSAR)的径向位移点散射体的三维(3D)点扩散函数(3D PSF)行为。对于需要高度自信的目标识别的自动目标识别(ATR)系统,CSAR处理代表了一种可行的选择,因为它可以产生分辨率小于波长的图像。使用非常大的CSAR孔径(90°或更大),可以通过单相中心和单程进行三维成像。使用反投影图像形成过程,在给定的雷达带宽,俯角和完整的360°CSAR孔径下,在各种目标位置生成点目标PSF响应。与以前的研究一致,位于图像中心的点目标的3D PSF是圆锥形的,并用作比较和表征径向位移散射体的3D PSF的基础。对于径向位移的点目标,模拟结果显示3D PSF响应是不对称的,并趋于变为椭圆形。

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