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Random-Frequency SAR Imaging Based on Compressed Sensing

机译:基于压缩感知的随机频SAR成像

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Stepped-frequency waveforms can achieve an ultrawide bandwidth by using a sequence of single-frequency pulses. The advantages of stepped-frequency waveforms are low hardware requirements and high resolution. However, the stepped-frequency waveform requires a long time period to transmit the signals, which limits its application in synthetic aperture radar (SAR). The available imaging range width is usually very narrow, unless the range and azimuth resolutions are both decreased. In this paper, a random-frequency SAR imaging scheme based on compressed sensing is proposed. If the targets are sparse or compressible, it is sufficient to transmit only a small number of random frequencies to reconstruct the image of the targets. This means that the limitations of the stepped-frequency technique for SAR can be overcome. The available imaging range width can be enlarged significantly, while the range and azimuth resolutions are both maintained. Random undersampling is very easy to implement for both range and azimuth dimensions, and no new hardware components are needed. Simulation and experimental results are presented to demonstrate the validity of the proposed method.
机译:通过使用一系列单频脉冲,步进频率波形可以实现超宽带宽。步进频率波形的优点是硬件要求低和分辨率高。但是,步进频率波形需要较长的时间来传输信号,这限制了其在合成孔径雷达(SAR)中的应用。除非范围和方位分辨率都降低,否则可用的成像范围宽度通常非常窄。提出了一种基于压缩感知的随机频率SAR成像方案。如果目标稀疏或可压缩,仅传输少量随机频率就足以重建目标图像。这意味着可以克服SAR步进频率技术的局限性。可用的成像范围宽度可以显着扩大,同时范围和方位分辨率都得以保持。对于范围和方位角尺寸,都非常容易实现随机欠采样,并且不需要新的硬件组件。仿真和实验结果表明了该方法的有效性。

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