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Compressive sensing in a photonic link for acquisition of spectrally-sparse wideband signals: Potentials and limitations

机译:光子链路中的压缩感测,用于获取频谱稀疏的宽带信号:潜力和局限性

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Compressive sensing (CS) is a novel technology to realize sub-Nyquist sampling for measuring of sparse signals. Due to the advantages of high bandwidth offered by photonics, realization of compressive sensing in a photonic link is of great interest. In this paper, we discussed the limitations of CS in a conventional photonic link A potential solution is proposed. To further reduce sampling rate, we propose to combine the techniques of photonic time stretch and CS. In addition, the photonic CS with random mixing realized by a spatial light modulator is discussed. Theoretical limit on frequency resolution for spectral mixing is derived.
机译:压缩感测(CS)是一种新颖的技术,可实现亚奈奎斯特采样,以测量稀疏信号。由于光子学提供的高带宽的优点,在光子链路中实现压缩感测引起了极大的兴趣。在本文中,我们讨论了常规光子链路中CS的局限性。提出了一种潜在的解决方案。为了进一步降低采样率,我们建议将光子时间拉伸技术和CS技术结合起来。另外,讨论了由空间光调制器实现的具有随机混合的光子CS。得出了频谱混合频率分辨率的理论极限。

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