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Multichannel Full-Aperture Azimuth Processing for Beam Steering SAR

机译:波束转向SAR的多通道全孔径方位角处理

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摘要

Terrain Observation by Progressive Scans (TOPS) synthetic aperture radar (SAR) and spotlight SAR are advanced SAR imaging modes for wide range swath and high resolution. In order to obtain a wider range coverage, azimuth multichannel is introduced in the literature. Since the azimuth bandwidth of beam steering SAR (BS-SAR; spotlight SAR, sliding spotlight SAR, or TOPS SAR) is much greater than that of a stripmap SAR, a signal reconstruction algorithm used for multichannel stripmap SAR may not be effective for multichannel BS-SAR. In this paper, a multichannel full-aperture azimuth processing algorithm is proposed for a BS-SAR. The key of this algorithm lies in the beam and the azimuth bandwidth compressions of multichannel signals in the Doppler–array and slow time–angle planes, respectively. Through compression processing, the beamwidth and the azimuth bandwidth are smaller than the available angle and equivalent pulse repeating frequency , respectively. Then, an improved post-Doppler STAP method is proposed to recover a 2-D spectrum. With the recovered signal, further processing can be utilized to focus the multichannel signal. Simulation and real data results show the effectiveness of the proposed algorithm.
机译:逐行扫描(TOPS)地形观察合成孔径雷达(SAR)和聚光灯SAR是先进的SAR成像模式,适用于宽范围和高分辨率。为了获得更广泛的覆盖范围,文献中引入了方位多通道。由于波束控制SAR(BS-SAR;聚光灯SAR,滑动聚光灯SAR或TOPS SAR)的方位角带宽远大于条形图SAR的方位角带宽,因此用于多通道条形图SAR的信号重构算法可能对多通道BS无效-SAR。本文提出了一种针对BS-SAR的多通道全孔径方位角处理算法。该算法的关键在于分别在多普勒阵列和慢时角平面中对多通道信号进行波束和方位角带宽压缩。通过压缩处理,波束宽度和方位角带宽分别小于可用角度和等效脉冲重复频率。然后,提出了一种改进的后多普勒STAP方法来恢复二维频谱。利用恢复的信号,可以利用进一步的处理来聚焦多通道信号。仿真和实际数据结果表明了该算法的有效性。

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