Laser & Optoelectronics Progress, Volume. 58, Issue 6, 600001(2021)

Development of Underwater Polarization Imaging Technology

Liu Fei1,2, Sun Shaojie1,2, Han Pingli1,2,3, Yang Kui1,2, and Shao Xiaopeng1,2、*
Author Affiliations
  • 1School of Physics and Optoelectronic Engineering, Xidian University, Xi''an, Shaanxi 710071, China
  • 2Xi''an Key Laboratory of Computational Imaging, Xi''an, Shaanxi 710071, China
  • 3Key Laboratory of Optical Engineering, Chinese Academic of Sciences, Chengdu, Sichuan 610209, China
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    Figures & Tables(30)
    Categories of underwater polarization imaging methods
    Detection principle of polarization difference imaging
    Comparison of original intensity image and recovered image[42]. (a) Original intensity image; (b) recovered image
    Comparison of polarization-sum image's PSF and polarization-difference image's PSF[43]. (a) Polarization-sum image's PSF; (b) polarization-difference image's PSF
    Comparison of original intensity image and computational polarization-difference image based on the Stokes vector[46]. (a) Intensity image; (b) polarization-difference image; (c) normalized intensity curves
    Recovered results and evaluation curves[47]. (a) Curves of PCE, contrast, image sharpness, and image edge intensity; (b)--(d) recovered images of different image pairs
    Physical model of underwater passive polarization imaging[40]
    Comparison of recovered result of traditional underwater passive polarization imaging[40]
    Relationship between K(x,y) and ΔD(x,y)[50]
    Comparison between original intensity image and the recovered image by Huang's method[50]
    Schematic of transmittance correction[51]
    Comparison between original intensity images and the recovered images by different methods[51]
    Flowchart of passive underwater polarization imaging technology in neritic area[52]
    Recovered images of passive underwater polarization imaging technology in neritic area[53]. (a1) Original intensity image; (b1)--(d1) intensity distribution in the R, G, B channels of original intensity image; (a2) reconstructed image; (b2)--(d2) intensity distribution in the R, G, B channels of reconstructed image; (a3) intensity image in clear water; (b3)--(d3) intensity distribution in the R, G, B channels of intensity image in clear water; (a
    Recovered image of passive underwater polarization imaging technology in neritic area in real scene[53]. (a) Original intensity image; (b) recovered image
    Polynomial fitting of non-uniform scene area[54]. (a) Intensity fitting of backscattered light; (b) degree of polarization fitting of backscattered light
    Comparison of image restoration in non-uniform scene. (a) Recovered image by Hu's method[54]; (b) recovered image by Schechner's method[40]; (c) original intensity image
    Physical model of underwater active polarization imaging[41]
    Recovered image of traditional underwater active polarization imaging[41]. (a) Original intensity image; (b) picture of target information light; (c) picture of backscattered light
    Relationship between ESF, LSF, and PSF[55]
    Flowchart of removing forward scattered light in active underwater imaging[55]
    Restoration of badminton target[55]. (a) Original intensity image; (b) detail enlarged view of intensity image; (c) recovered image; (d) detail enlarged view of recovered image
    Comparison of Fourier spectra and intensity statistics values of intensity image and recovered image[55]. (a)(b) Original intensity image and its Fourier spectrum; (c)(d) recovered image and its Fourier spectrum; (e) intensity statistics value of the 240th row pixel of intensity image and recovered image
    Restoration results of different targets by multi-scale underwater polarization imaging[56]. The left part is original intensity image and the right part is the recovered image
    Diagram of imaging correlation solution[57]
    Recovered results in water with gradually varied turbidity[57]. (a1)--(f1) Using blue light illumination; (a2)--(f2) using Liu's method
    Comparison between original intensity images and the recovered images by Feng's method[58]. (a)(c)(e) Original intensity images; (b)(d)(f) recovered images
    Original intensity images and recovered images by Guan's method in turbid water with gradually varied depth[59]
    Architecture of polarimetric dense network[62]
    Comparison between recovered images by Polarimetric-Net and Intensity-Net[62]. (a)--(c) Original intensity image, recovered image by Polarimetric-Net, recovered image by Intensity-Net; (d)--(f) enlarged frame of selection area
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    Liu Fei, Sun Shaojie, Han Pingli, Yang Kui, Shao Xiaopeng. Development of Underwater Polarization Imaging Technology[J]. Laser & Optoelectronics Progress, 2021, 58(6): 600001

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    Paper Information

    Category: Reviews

    Received: Feb. 21, 2021

    Accepted: --

    Published Online: Mar. 16, 2021

    The Author Email: Xiaopeng Shao (xpshao@xidian.edu.cn)

    DOI:10.3788/LOP202158.0600001

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