• Laser & Optoelectronics Progress
  • Vol. 55, Issue 12, 121008 (2018)
Mengxia Qiao, Mudi Xiong*, Tingting Cui, and Jingrun Li
Author Affiliations
  • College of Information Science and Technology, Dalian Maritime University, Dalian, Liaoning 116026, China
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    DOI: 10.3788/LOP55.121008 Cite this Article Set citation alerts
    Mengxia Qiao, Mudi Xiong, Tingting Cui, Jingrun Li. A Zoom Color Video Construction Method in Night and Foggy Days[J]. Laser & Optoelectronics Progress, 2018, 55(12): 121008 Copy Citation Text show less
    Results of visible light background image panorama stitching. (a) Original image 1; (b) original image 2; (c) feature point matching diagram; (d) stitching images; (e) stitching images after removing black areas
    Fig. 1. Results of visible light background image panorama stitching. (a) Original image 1; (b) original image 2; (c) feature point matching diagram; (d) stitching images; (e) stitching images after removing black areas
    Results of color video background image construction. (a1) Scene 1 manual calibration interface; (a2) scene 2 manual calibration interface; (b1) scene 1 registration result; (b2) scene 2 registration result; (c1)scene 1 color video background image; (c2) scene 2 color video background image
    Fig. 2. Results of color video background image construction. (a1) Scene 1 manual calibration interface; (a2) scene 2 manual calibration interface; (b1) scene 1 registration result; (b2) scene 2 registration result; (c1)scene 1 color video background image; (c2) scene 2 color video background image
    Flow chart of infrared motion target extraction
    Fig. 3. Flow chart of infrared motion target extraction
    Results of infrared motion target extraction. (a1) Scene 1 original infrared video image; (b1) scene 1 vibe modeled extracted background image; (c1) scene 1 infrared moving target; (a2) scene 2 original infrared video image; (b2) scene 2 vibe modeling extracted background image; (c2) scene 1 infrared motion target
    Fig. 4. Results of infrared motion target extraction. (a1) Scene 1 original infrared video image; (b1) scene 1 vibe modeled extracted background image; (c1) scene 1 infrared moving target; (a2) scene 2 original infrared video image; (b2) scene 2 vibe modeling extracted background image; (c2) scene 1 infrared motion target
    Experimental results of scene 1. (a) Visible light background panoramic image; (b) original infrared video image; (c) color video background image; (d) infrared motion target; (e) color video based on proposed method; (f) colorized map based on color transfer
    Fig. 5. Experimental results of scene 1. (a) Visible light background panoramic image; (b) original infrared video image; (c) color video background image; (d) infrared motion target; (e) color video based on proposed method; (f) colorized map based on color transfer
    Experimental results of scene 2. (a) Visible light background panoramic image; (b) original infrared video image; (c) color video background image; (d) infrared motion target; (e) color video based on proposed method; (f) colorized map based on color transfer
    Fig. 6. Experimental results of scene 2. (a) Visible light background panoramic image; (b) original infrared video image; (c) color video background image; (d) infrared motion target; (e) color video based on proposed method; (f) colorized map based on color transfer
    Mengxia Qiao, Mudi Xiong, Tingting Cui, Jingrun Li. A Zoom Color Video Construction Method in Night and Foggy Days[J]. Laser & Optoelectronics Progress, 2018, 55(12): 121008
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