李基隆, 段向阳, 范忱, 吕凯林, 宗柏青. 面向6G的全频段实时傅里叶变换技术研究(特邀)[J]. 红外与激光工程, 2021, 50(7): 20211055. DOI: 10.3788/IRLA20211055
引用本文: 李基隆, 段向阳, 范忱, 吕凯林, 宗柏青. 面向6G的全频段实时傅里叶变换技术研究(特邀)[J]. 红外与激光工程, 2021, 50(7): 20211055. DOI: 10.3788/IRLA20211055
Li Jilong, Duan Xiangyang, Fan Chen, Lv Kailin, Zong Baiqing. Research on full band real time Fourier transformation for 6G (Invited)[J]. Infrared and Laser Engineering, 2021, 50(7): 20211055. DOI: 10.3788/IRLA20211055
Citation: Li Jilong, Duan Xiangyang, Fan Chen, Lv Kailin, Zong Baiqing. Research on full band real time Fourier transformation for 6G (Invited)[J]. Infrared and Laser Engineering, 2021, 50(7): 20211055. DOI: 10.3788/IRLA20211055

面向6G的全频段实时傅里叶变换技术研究(特邀)

Research on full band real time Fourier transformation for 6G (Invited)

  • 摘要: 面向未来6G无线通信技术中微波信号的时频信息分析问题,文中提出了一种基于光学离散色散器件的微波光子实时傅里叶变换系统。该离散色散器件在幅频特性上表现出周期性的窄带滤波性质,在相频特性上表现出离散的二次相位分布。利用该色散器件可以完成光载微波信号的频时映射,在此基础上,可以进一步实时连续地实现对非平稳信号的时间频率信息特征提取。由于只需要实现离散的相移而不是传统色散器件的真延时,所以可以在较小的体积内实现巨大的等效色散,从而减小系统的处理延时。文中设计了光纤微环级联方案实现离散色散,在此方案中单个光纤微环的环长为4 cm,并通过数值仿真实现了0.8 ps/MHz的频时映射斜率,等效于5800 km单模光纤的色散大小,频率分辨率达到了50 MHz,瞬时带宽为5 GHz。以6G感知通信一体化中经常用到的线性调频信号为例,仿真了系统的短时傅里叶变换功能以分析信号的时间和频率信息,其中,时间分辨率达到20 ns,频谱分析的速度高达,显著优于传统的数字分析方案。

     

    Abstract: In this paper, a scheme was proposed to achieve microwave photonic real time Fourier transformation based on spectrally-discrete dispersion, which aimed for the time-frequency information analysis of microwave signals in the future 6G wireless communication. The discrete dispersion media showed periodic narrowband filtering in the intensity frequency response and discrete quadratic phase distribution in the phase frequency response. Real time frequency to time mapping of microwave signals was then obtained using the discrete dispersion media. Furthermore, the time and frequency information of a non-stationary signal could be analyzed. Since only discrete phase shifts rather than continuously-changed true time delay were required, huge equivalent dispersion could be achieved with compact device to reduce the delay. An implementation based on cascaded ring resonators was proposed in this paper to achieve discrete dispersion, where fiber loops of 4 cm were used. Highly linear FTM with a slope of 0.8 ps/MHz was obtained through numerical stimulation, which was equivalent to 5800 km standard single-mode fiber. The resolution of the FTM reached 50 MHz and the unambiguous bandwidth reached 5 GHz. Taking the linear frequency modulation (LFM) signal which was often used in the convergence of sensing and communication in 6G as an example, the short-time Fourier transform function of the system was simulated to analyze the time and frequency information of the signal. The time resolution reached 20 ns, and the speed of spectrum analysis was as high asFTs/s, which was significantly better than the traditional DSP based schemes.

     

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