• High Power Laser and Particle Beams
  • Vol. 36, Issue 4, 043017 (2024)
Meiling Yang, Shuguo Xie, Shenda Zhang, Rongguang Feng, and Yan Yang
Author Affiliations
  • Electromagnetic Compatibility Research Institute, School of Electronic and Information Engineering, Beihang University, Beijing 100191, China
  • show less
    DOI: 10.11884/HPLPB202436.230383 Cite this Article
    Meiling Yang, Shuguo Xie, Shenda Zhang, Rongguang Feng, Yan Yang. Large field-of-view Luneburg lens electromagnetic imaging super-resolution research[J]. High Power Laser and Particle Beams, 2024, 36(4): 043017 Copy Citation Text show less
    References

    [1] Kodali V P. Engineering electromagic compatibility: principles, measurements, technologies, computer models[M]. Piscataway: IEEE Press, 2001.

    [2] Li Gaiyou. Research on adaptive tracking infmation fusion of emitters in complex electromagic environment[D]. Chengdu: University of Electronic Science Technology of China, 2022

    [3] Chen Zhao. Research design of UWB receiver[D]. Chengdu: University of Electronic Science Technology of China, 2023

    [4] Xie Shuguo, Wang Tianheng, Hao Xuchun et al. Localization and frequency identification of large-range wide-band electromagnetic interference sources in electromagnetic imaging system[J]. Electronics, 8, 499(2019).

    [5] Yang Yan, Xie Shuguo, Dong Yakai et al. A frequency recovering method for photonic under-sampling E-field measurement[J]. IEEE Sensors Journal, 21, 13495-13505(2021).

    [6] Du Xin, Xie Shuguo, Hao Xuchun, . An electromagnetic interference source imaging algorithm of multi-resolution partitions[J]. High Power Laser and Particle Beams, 27, 103223(2015).

    [7] Niu Lijie, Liu Hao, Wu Lin, et al. Experimental study of an Lb synthetic aperture radiometer f ocean salinity measurement[C]Proceedings of 2016 IEEE International Geoscience Remote Sensing Symposium. 2016: 418421.

    [8] Zhao Lan. Study on mechanism of millimeterwave staring imaging[D]. Hefei: University of Science Technology of China, 2009

    [9] Li Xianjin. Overview of Luneberg lens antenna[C]Proceedings of the 6th Annual Conference on New Services Technologies of Satellite Communication. 2010: 444450

    [10] Wang Xi. Research on millimeterwave multibeam Luneburg lens antennas highgain transmitaray antennas[D]. Chengdu: University of Electronic Science Technology of China, 2023

    [11] Luneberg R K. Mathematical they of optics[M]. Providence: Brown University Press, 1944.

    [12] Zhao Liwei, Wu Yafei, Wang Cong, et al. A 3-D-printed deployable Luneburg lens antenna based on the pop-up kirigami sphere[J]. IEEE Transactions on Antennas and Propagation, 71, 6481-6489(2023).

    [13] Peeler G, Coleman H. Microwave stepped-index luneberg lenses[J]. IRE Transactions on Antennas and Propagation, 6, 202-207(1958).

    [14] Sanford J R. Scattering by spherically stratified microwave lens antennas[J]. IEEE Transactions on Antennas and Propagation, 42, 690-698(1994).

    [15] Yang Meiling, Xie Shuguo, Zhang Shenda, et al. Spacefrequency domain nonblind method f wideb electromagic imaging restation[C]Proceedings of 2021 International Applied Computational Electromagics Society (ACESChina) Symposium. 2021: 12.

    [16] Xie Shuguo, Luan Shenshen, Wang Tianheng, et al. Frequency estimation method for wideband microwave camera[J]. IEEE Transactions on Antennas and Propagation, 69, 6838-6847(2021).

    Meiling Yang, Shuguo Xie, Shenda Zhang, Rongguang Feng, Yan Yang. Large field-of-view Luneburg lens electromagnetic imaging super-resolution research[J]. High Power Laser and Particle Beams, 2024, 36(4): 043017
    Download Citation