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Design Considerations of PRF for Optimizing GMTI Performance in Azimuth Multichannel SAR Systems With HRWS Imaging Capability

机译:在具有HRWS成像能力的方位角多通道SAR系统中优化GMTI性能的PRF设计考虑

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摘要

Using multichannel in azimuth to suppress the Doppler ambiguities allows for high-resolution wide-swath (HRWS) synthetic aperture radar (SAR) imaging, thus overcoming the minimum antenna area constraint of the conventional space-borne SAR. If the degrees of freedom in azimuth are used for the clutter suppression, the ground moving target indication (GMTI) can be achieved. Therefore, a space-borne multichannel SAR system for GMTI has the potential to offer HRWS imaging capability to some extent. However, here, the GMTI performance may suffer from the Doppler ambiguity caused by the undersampling. This paper focuses on the analysis of the influence of pulse repetition frequency (PRF) on GMTI performance in Doppler ambiguity. The multichannel signal models of the clutter and the moving target with Doppler ambiguity are derived in complex image domain. Considering the Doppler ambiguity and the multichannel spatial ambiguity, the influence of PRF on the output signal-to-clutter-plus-noise ratio after adaptive clutter suppression and the signal-to-noise ratio loss after SAR imaging is discussed. Accordingly, the design considerations of PRF for optimizing GMTI performance in multichannel SAR systems with HRWS imaging capability are given, along with a simulation example. Finally, the real-data experiments verify the theoretical investigations.
机译:使用方位角上的多通道抑制多普勒模糊性可以实现高分辨率宽幅(HRWS)合成孔径雷达(SAR)成像,从而克服了常规星载SAR的最小天线面积限制。如果将方位角的自由度用于杂波抑制,则可以实现地面移动目标指示(GMTI)。因此,用于GMTI的星载多通道SAR系统有潜力在一定程度上提供HRWS成像功能。但是,此处的GMTI性能可能会因欠采样而导致多普勒模糊。本文着重分析多普勒模糊度下脉冲重复频率(PRF)对GMTI性能的影响。在复杂图像域中导出了具有多普勒模糊度的杂波和运动目标的多通道信号模型。考虑到多普勒模糊度和多通道空间模糊度,讨论了PRF对自适应杂波抑制后输出信噪比的影响以及SAR成像后的信噪比损失。因此,给出了用于优化具有HRWS成像能力的多通道SAR系统中GMTI性能的PRF的设计考虑,以及一个仿真示例。最后,实际数据实验验证了理论研究。

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