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Image-Based Target Detection and Radial Velocity Estimation Methods for Multichannel SAR-GMTI

机译:基于图像的多通道SAR-GMTI目标检测与径向速度估计方法

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In order to enhance the performance of spaceborne synthetic aperture radar–ground moving target indication (SAR-GMTI) systems, multichannel systems with large and preferably nonuniform baselines are required. In this paper, SAR-GMTI algorithms for multichannel SAR systems, which we call multichannel displaced phase center antenna (DPCA), multichannel along track interferometry (ATI), and multichannel DPCA-ATI, are presented. Multichannel DPCA is a deterministic algorithm for clutter and azimuth ambiguity suppression. It successfully suppresses not only uniform azimuth ambiguities but also nonuniform isolated ones, since it does not require uniform clutter covariance assumption as adaptive algorithms do. Multichannel ATI and multichannel DPCA-ATI are the algorithms for target radial velocity estimation. Both of them reduce the target radial velocity ambiguities, which arise with the long baseline systems, by exploiting the multiple receive channel signals. And multichannel DPCA-ATI further achieves robust performance to clutter influence by suppressing the clutter and the azimuth ambiguity in advance. The performances of the proposed algorithms are shown through airborne Ku-band three-channel SAR experiments. It is shown that the multichannel DPCA suppresses strong azimuth ambiguity up to more than 20 dB, and the accuracy of the radial velocity estimation of the multichannel DPCA-ATI is on the order of 0.1 m/s. Furthermore, statistical performance analysis is presented to discuss the potential performance on the spaceborne system.
机译:为了增强星载合成孔径雷达-地面移动目标指示(SAR-GMTI)系统的性能,需要具有较大基线(最好是非均匀基线)的多通道系统。在本文中,提出了用于多通道SAR系统的SAR-GMTI算法,我们将其称为多通道位移相中心天线(DPCA),沿轨迹干涉法的多通道(ATI)和多通道DPCA-ATI。多通道DPCA是用于抑制杂波和方位角模糊性的确定性算法。由于它不需要像自适应算法那样的统一杂波协方差假设,因此它不仅可以成功地抑制均匀方位角的歧义,而且可以抑制非均匀孤立的方位角的歧义。多通道ATI和多通道DPCA-ATI是用于目标径向速度估计的算法。通过利用多个接收通道信号,它们都降低了目标径向速度的歧义,这在长基线系统中会出现。并且,多通道DPCA-ATI通过预先抑制杂波和方位模糊性,进一步获得了对杂波影响的鲁棒性能。通过机载Ku波段三通道SAR实验证明了所提出算法的性能。结果表明,多通道DPCA可以抑制高达20 dB以上的强方位角模糊性,并且多通道DPCA-ATI的径向速度估计精度约为0.1 m / s。此外,提出了统计性能分析,以讨论星载系统的潜在性能。

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