• Infrared and Laser Engineering
  • Vol. 50, Issue 7, 20211044 (2021)
Bing Lu1、2 and Xihua Zou1、*
Author Affiliations
  • 1School of Information Science and Technology, Southwest Jiaotong University, Chengdu 611756, China
  • 2School of Communication and Information Engineering, Chongqing University of Posts and Telecommunications, Chongqing 400065, China
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    DOI: 10.3788/IRLA20211044 Cite this Article
    Bing Lu, Xihua Zou. Photonic microwave measurements (Invited)[J]. Infrared and Laser Engineering, 2021, 50(7): 20211044 Copy Citation Text show less
    References

    [1] Xihua Zou, Bing Lu, Wei Pan, et al. Photonics for microwave measurements. Laser Photonics Reviews, 10, 711-734(2016).

    [2] Shilong Pan, Jianping Yao. Photonics-based broadband microwave measurement. Journal of Lightwave Technology, 35, 3498-3513(2017).

    [3] Shilong Pan, Yamei Zhang. Microwave photonic radars. Journal of Lightwave Technology, 38, 5450-5484(2020).

    [4] Anh Bui Lam. Recent advances in microwave photonics instantaneous frequency measurements. Progress in Quantum Electronics, 69, 100237(2020).

    [5] Tao Lin, Canwen Zou, Zhike Zhang, et al. Differentiator-based photonic instantaneous frequency measurement for radar warning receiver. Journal of Lightwave Technology, 38, 3942-3949(2020).

    [6] Beibei Zhu, Weifeng Zhang, Shilong Pan, et al. High-sensitivity instantaneous microwave frequency measurement based on a silicon photonic integrated Fano resonator. Journal of Lightwave Technology, 37, 2527-2533(2019).

    [7] Bing Lu, Wei Pan, Xihua Zou, et al. Photonic-assisted real-time intra-pulse parameters measurement of complex microwave signals. Journal of Lightwave Technology, 36, 3633-3644(2018).

    [8] Xihua Zou, Fang Zou, Zizheng Cao, et al. Integrated microwave photonics: A multifunctional photonic integrated circuit for diverse microwave signal generation, transmission, and processing. Laser Photonics Reviews, 13, 1970027(2019).

    [9] Hengyun Jiang, Marpaung David, Pagani Mattia, et al. Wide-range, high-precision multiple microwave frequency measurement using a chip-based photonic Brillouin filter. Optica, 3, 30-34(2016).

    [10] Xu Wang, Feng Zhou, Dingshan Gao, et al. Wideband adaptive microwave frequency identification using an integrated silicon photonic scanning filter. Photonics Reasearch, 7, 172-181(2019).

    [11] Xiuting Zou, Shaofu Xu, Shujing Li, et al. Optimization of the Brillouin instantaneous frequency measurement using convolutional neural networks. Optics Letters, 44, 5723-5826(2019).

    [12] Yuewen Zhou, Fangzheng Zhang, Jingzhan Shi, et al. Deep neural network-assisted high-accuracy microwave instantaneous frequency measurement with a photonic scanning receiver. Optics Letters, 45, 3038-3041(2020).

    [13] Sitong Wang, Guiling Wu, Yiwei Sun, et al. Photonic compressive receiver for multiple microwave frequency measurement. Optics Express, 27, 25364-25373(2019).

    [14] Yan Zheng, Jilong Li, Yitang Dai, et al. Real-time Fourier transformation based on the bandwidth magnification of RF signals. Optics Letters, 43, 194-197(2018).

    [15] Come Schnebelin, Chatellus Hugues Guillet de. Agile photonic fractional Fourier transformation of optical and RF signals. Optica, 4, 907-910(2017).

    [16] Hongzhi Zhang, Brunel Marc, Vallet Marc, et al. Optical frequency-to-time mapping using a phase-modulated frequency-shifting loop. Optics Letters, 46, 2336-2339(2021).

    [17] Xingyuan Xu, Mengxi Tan, Jiayang Wu, et al. Broadband photonic RF channelizer with 92 channels based on a soliton crystal microcomb. Journal of Lightwave Technology, 38, 5116-5121(2020).

    [18] Hao Wenhui, Dai Yitang, Zhou Y, et al. Coherent wideb microwave channelizer based on dual optical frequency combs [C]IEEE Avionics Vehicle FiberOptics Photonics Conference, 2016: 183184.

    [19] Wenhui Hao, Yitang Dai, Y Zhou, et al. Chirped-pulse-based broadband RF channelization implemented by a mode-locked laser and dispersion. Optics Letters, 42, 5234-5237(2018).

    [20] Wenjuan Chen, Dan Zhu, Chenxu Xie, et al. Microwave channelizer based on a photonic dual-output image-reject mixer. Optics Letters, 44, 4052-4055(2019).

    [21] Ruiyue Li, Hongwei Chen, Lei Cheng, et al. Optical serial coherent analyzer of radiofrequency (OSCAR). Optics Express, 22, 13579-13585(2014).

    [22] Onori Daniel, Scotti Filippo, Laghezza Francesco, et al. A photonically enabled compact 0.5-28.5 GHz RF scanning receiver. Journal of Lightwave Technology, 36, 1831-1839(2018).

    Bing Lu, Xihua Zou. Photonic microwave measurements (Invited)[J]. Infrared and Laser Engineering, 2021, 50(7): 20211044
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