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Interferometric Circular SAR Method for Three-Dimensional Imaging

机译:干涉圆SAR法进行三维成像

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The aperture of 360$^{circ}$ gives circular synthetic aperture radar (SAR) (CSAR) the capability to detect hidden target when its orientation is unknown. Subwavelength resolution can also be achieved when the target in the spotted area is observed under a complete circular aperture. Furthermore, the aspect angle diversity inherent to the circular trajectory makes possible a 3-D target reconstruction. However, the latter two potentials require certain target reflectivity homogeneity. For a highly directive scatterer, it has no resolving ability in the direction normal to the data collection plane. In this letter, a new interferometric CSAR method is presented to enhance the tomographic imaging capability for highly directive scatterers without sacrificing other scatterers' resolutions. This method takes advantage of the coherence and the phase difference between a pair of 3-D SAR images formed from data collected at two separate circular apertures to eliminate targets that focused at a wrong elevation. In addition, it uses two different transmit frequencies to solve the problem of phase cycle ambiguities. Finally, simulation results validate this new approach.
机译:360°的孔径使圆形合成孔径雷达(SAR)(CSAR)能够在方向未知时检测隐藏目标。当在一个完整的圆形光圈下观察到斑点区域中的目标时,也可以实现亚波长分辨率。此外,圆形轨迹固有的纵横角分集使得3D目标重建成为可能。但是,后两种电位需要一定的目标反射率均匀性。对于高度定向的散射体,它在垂直于数据收集平面的方向上没有解析能力。在这封信中,提出了一种新的干涉式CSAR方法,以增强高方向性散射体的层析成像能力,而不会牺牲其他散射体的分辨率。该方法利用了从在两个单独的圆形孔径处收集的数据形成的一对3-D SAR图像之间的相干性和相位差,可以消除聚焦在错误高度上的目标。另外,它使用两个不同的发射频率来解决相位循环歧义的问题。最后,仿真结果验证了这种新方法。

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