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Near-field radar 3D synthetic aperture imaging based on Stolt interpolation

机译:基于Stolt插值的近场雷达3D合成孔径成像

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Synthetic aperture processing for radar data can improve resolution of radar image, and increase the detecting ability of radar. Utilizing phase and amplitude information recorded over a 2D aperture can reconstruct a focused 3D image of the target. Quasimonostatic mode is used and the transmitting antenna transmits in step frequency. A new Stolt interpolation method which can increase accuracy of interpolation is presented. Also the method requires little computation time. 3D image of the target is achieved through the fast Fourier transform after interpolation. The algorithm is described in detail and numerous imaging results from simulations and experiment are presented. These results show that the algorithm for 3D image-reconstruction based on this interpolation method presented can produce a microwave 3D image with high resolutions.
机译:雷达数据的综合孔径处理可以提高雷达图像的分辨率,并提高雷达的探测能力。利用记录在2D光圈上的相位和幅度信息可以重建目标的聚焦3D图像。使用准单静态模式,并且发射天线以步进频率发射。提出了一种可以提高插值精度的新的Stolt插值方法。而且该方法需要很少的计算时间。插值后通过快速傅立叶变换获得目标的3D图像。详细描述了该算法,并给出了来自仿真和实验的大量成像结果。这些结果表明,基于提出的这种插值方法的3D图像重建算法可以产生高分辨率的微波3D图像。

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