• Infrared and Laser Engineering
  • Vol. 52, Issue 11, 20230119 (2023)
Yaqing Zhu1,2, Rongyi Ji1,2,*, Dengfeng Dong1,2, and Weihu Zhou1,2
Author Affiliations
  • 1Institute of Microelectronics of the Chinese Academy of Sciences, Beijing 100029, China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
  • show less
    DOI: 10.3788/IRLA20230119 Cite this Article
    Yaqing Zhu, Rongyi Ji, Dengfeng Dong, Weihu Zhou. Simulation and implementation of undersampling all-phase FFT phase discrimination method[J]. Infrared and Laser Engineering, 2023, 52(11): 20230119 Copy Citation Text show less
    References

    [1] Ting Zhang, Keshu Zhang. Study of phase-shift laser measuring based on Matlab. Laser & Infrared, 40, 22-27(2010).

    [2] Yingling Pan, Rongyi Ji, Chao Gao, . High-speed phase laser ranging technology based on vector inner product method. Infrared and Laser Engineering, 51, 20210186(2022).

    [3] Teng Xiao. Research implementation of undersampling phase detection method f phase laser ranging[D]. Harbin: Harbin University of Science Technology, 2020. (in Chinese)

    [4] Maoheng Sun, Wen Zhao. Precision improvement of undersampling theory using phasic laser rangefinder. Infrared and Laser Engineering, 38, 70-73(2009).

    [5] Wenfeng Xie, Menglin Li, Weihu Zhou, . Laser beat-frequency phase-shift ranging based on undersampling spectrum analysis. Laser & Infrared, 45, 1194-1199(2015).

    [6] Zhaohua Wang, Xiangdong Huang, Wei Yang. The measuring phase method of all-phase FFT. World Sci-tech R & D, 28-32, 27(2007).

    [7] Ningyi Gou, Keshu Zhang. High speed digital phase-difference measuring methods simulation and implementation in phase-shift laser range finder. Infrared and Laser Engineering, 41, 2358-2363(2012).

    [8] Yang Jiamin. Research on realtime measurement trigger technology based on continuous wave phase shift[D]. Taiyuan: Nth University of China, 2019. (in Chinese)

    [9] Fangxiu Jia, Zhenliang Ding, Feng Yuan. New phase difference measurement based on digital synchronous demodulation. Instrument Technique and Sensor, 78-80(2009).

    [10] Grzegz Budzyn, Tkaczyk Jakub. Methods of real time high resolution phase detection f use in laser rangefinders[C]11th International Conference on Vibration Measurements by Laser, Ancona, Italy, 2014: 1721.

    [11] Xuangang Wang, Ningyi Gou, Keshu Zhang. Unbiased improvement of spectrum analysis phase discrimination for phase-shift laser range finder. Optics and Precision Engineering, 20, 888-895(2012).

    [12] Xinyao Wang, Keshu Zhang. Digital phase-shift measuring methods based on sub-sampling in laser range finder. Infrared and Laser Engineering, 42, 1330-1337(2013).

    [13] Dong Chen, Enhai Liu. Study of FFT and apFFT phase discrimination in phase-shift laser rang finder. Laser & Infrared, 43, 1108-1112(2013).

    [14] Tianmao Guo, Ke Liu, Yinxiao Miao, . Application of all phase FFT frequency measurement in FMCW laser ranging technology. Journal of Astronautic Metrology and Measurement, 39, 45-50(2019).

    [15] Jiahe Yu, Haosen Shi, Youjian Song, . Study on Kalman filtering in high-precision absolute distance measurement based on dual femtosecond lasers. Chinese Journal of Lasers, 44, 0610001(2017).

    [16] Xiao Zhao, Haima Yang, Jia Qiang, . High-precision coherent laser ranging method based on Kalman filtering. Acta Optica Sinica, 40, 1412001(2020).

    [17] Haoyu Ren, Chenxia Guo, Ruifeng Yang. Research on improving UWB ranging accuracy by Kalman filter. Electronic Measurement Technology, 44, 111-115(2021).

    [18] Xiangdong Huang, Zhaohua Wang. Principle of all-phase DFT restraining spectral leakage and the application in correcting spectrum. Journal of Tianjin University, 882-886(2007).

    [19] Xuangang Wang, Ningyi Gou, Keshu Zhang. ApFFT phase discrimination in phase-shift laser range finder. Information and Electronic Engineering, 10, 725-729(2012).

    Yaqing Zhu, Rongyi Ji, Dengfeng Dong, Weihu Zhou. Simulation and implementation of undersampling all-phase FFT phase discrimination method[J]. Infrared and Laser Engineering, 2023, 52(11): 20230119
    Download Citation