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Range ambiguity suppression for multi-channel SAR system near singular points

机译:奇异点附近多通道SAR系统的距离模糊抑制

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The technique of multiple apertures in azimuth enables a wide swath synthetic aperture radar (SAR) with high azimuth resolution. In a traditional multi-channel SAR system, a reconstruction algorithm is built to recover the ambiguous Doppler spectrum caused by non-uniform sampling. However, if the system pulse repetition frequency (PRF) is near some specific values, singular points exist in the reconstruction algorithm and therefore the spectrum cannot be recovered correctly. The normal method to avoid the influence of the singular points is to use only part of channels to do the reconstruction algorithm. In this paper a new method is proposed to overcome the singularity of the reconstruction algorithm while suppress the range ambiguity by using the azimuth phase coding (APC) technology. By taking advantage of the “abandoned” channels' signal, a proper azimuth beamformer weight vector can be computed to null out the range ambiguity position which has been shifted by APC technology, thus the range ambiguity is significantly suppressed while the useful signal is well recovered. Moreover, the simulation results are presented to validate the effectiveness of the proposed method.
机译:方位角上的多个孔径技术可实现具有高方位角分辨率的宽幅合成孔径雷达(SAR)。在传统的多通道SAR系统中,构建了一种重建算法来恢复由于采样不均匀而导致的多普勒频谱模糊。但是,如果系统脉冲重复频率(PRF)接近某些特定值,则重构算法中会存在奇异点,因此无法正确恢复频谱。避免奇异点影响的正常方法是仅使用部分通道来进行重构算法。本文提出了一种新的方法来克服重构算法的奇异性,同时通过使用方位角相位编码(APC)技术抑制距离模糊性。通过利用“废弃”信道的信号,可以计算出适当的方位角波束形成器权重向量,以使已被APC技术偏移的范围模糊度位置无效,因此在有效恢复良好信号的同时,范围模糊度得到了显着的抑制。 。此外,仿真结果表明了该方法的有效性。

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