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Background-Free Ground Moving Target Imaging for Multi-PRF Airborne SAR

机译:多PRF机载SAR的无背景地面移动目标成像

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Synthetic aperture radar (SAR) is an advanced imaging sensor that can image side-looking terrain. Until now, SAR schemes and imaging theories have been researched for stationary scenes. Unlike a stationary scene, due to unknown motion parameters, a ground moving target (GMT) is shifted and defocused in a background image, which causes difficulties in their use for further applications. This paper proposes a multiple pulse repetition frequency (PRF) airborne SAR scheme for background-free GMT imaging. In the proposed scheme, pulses are transmitted by a nonuniform pulse repetition time, and echoes are divided into groups with different PRFs. For spectra with different PRFs, due to their diverse respective spectra extending periods, periodical extending GMT spectra will not appear at the same location except for the original spectra. A theorem is proposed to prove that the spectra can be extracted intact, undistorted, and unpolluted. In light of the divergence of the GMT spectra location from that of the clutter, filter hanks are designed to locate, extract, and reconstruct the GMT spectra out of the mixed spectra that contain the GMT and clutter. For GMT SAR imaging, a moving target is regarded as a steady target under an equivalent geometry with a new equivalent squint angle and a new SAR platform velocity. The SAR image is obtained with the range-Doppler algorithm with equivalent geometry parameters that are estimated from the Doppler parameters. Experimental results obtained from using extensive numerical simulated data validate our proposed approach.
机译:合成孔径雷达(SAR)是一种高级成像传感器,可以对侧面地形进行成像。到目前为止,针对静止场景研究了SAR方案和成像理论。与静止场景不同,由于运动参数未知,地面移动目标(GMT)在背景图像中移动和散焦,这给它们在进一步应用中的使用带来了困难。本文提出了一种无背景GMT成像的多脉冲重复频率(PRF)机载SAR方案。在提出的方案中,脉冲以不均匀的脉冲重复时间发送,并且回波被分为具有不同PRF的组。对于具有不同PRF的光谱,由于它们各自的光谱扩展周期不同,因此除了原始光谱外,周期性扩展的GMT光谱不会出现在相同位置。提出了一个定理,以证明可以完整,无失真和无污染地提取光谱。鉴于GMT频谱位置与杂波的位置存在差异,设计了滤镜束以从包含GMT和杂波的混合频谱中定位,提取和重构GMT频谱。对于GMT SAR成像,在具有新的等效斜视角和新的SAR平台速度的等效几何结构下,将移动目标视为稳定目标。 SAR图像是使用距离多普勒算法获得的,该算法具有从多普勒参数估计的等效几何参数。通过使用大量数值模拟数据获得的实验结果验证了我们提出的方法。

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