• Laser & Optoelectronics Progress
  • Vol. 56, Issue 12, 121101 (2019)
Ming Zhao*, Ximing Wang, Xiaohui Zhang, and Wang Zhang
Author Affiliations
  • College of Information Science Technology, Dalian Maritime University, Dalian, Liaoning 116026, China
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    DOI: 10.3788/LOP56.121101 Cite this Article Set citation alerts
    Ming Zhao, Ximing Wang, Xiaohui Zhang, Wang Zhang. Experimental Research onMacroscopic Fourier Ptychography Super-Resolution Imaging[J]. Laser & Optoelectronics Progress, 2019, 56(12): 121101 Copy Citation Text show less
    Physical model schematic for macroscopic Fourier ptychography imaging. (a) Schematic of device; (b) schematic of aperture scan; (c) schematic of imaging inside camera
    Fig. 1. Physical model schematic for macroscopic Fourier ptychography imaging. (a) Schematic of device; (b) schematic of aperture scan; (c) schematic of imaging inside camera
    Schematic of reconstruction process of Fourier ptychography
    Fig. 2. Schematic of reconstruction process of Fourier ptychography
    Principle diagram of experiment
    Fig. 3. Principle diagram of experiment
    Experimental setup for macroscopic Fourier ptychography imaging
    Fig. 4. Experimental setup for macroscopic Fourier ptychography imaging
    Fourier ptychography datasets for USAF target
    Fig. 5. Fourier ptychography datasets for USAF target
    Fourier ptychography datasets for Pentagram
    Fig. 6. Fourier ptychography datasets for Pentagram
    Super-resolution reconstruction results for USAF target. (a) Low-resolution image for small aperture camera; (b) super-resolution reconstruction image using Fourier ptychography; (c) partial enlargement of Fig. (a); (d) partial enlargement of Fig. (b)
    Fig. 7. Super-resolution reconstruction results for USAF target. (a) Low-resolution image for small aperture camera; (b) super-resolution reconstruction image using Fourier ptychography; (c) partial enlargement of Fig. (a); (d) partial enlargement of Fig. (b)
    Super-resolution reconstruction results for pentagram target. (a) Low-resolution image from small aperture camera; (b) super-resolution reconstruction image using Fourier ptychography; (c) image from 18.75 mm aperture camera; (d) partial enlargement of Fig. (a); (e) partial enlargement of Fig. (b); (f) partial enlargement of Fig. (c)
    Fig. 8. Super-resolution reconstruction results for pentagram target. (a) Low-resolution image from small aperture camera; (b) super-resolution reconstruction image using Fourier ptychography; (c) image from 18.75 mm aperture camera; (d) partial enlargement of Fig. (a); (e) partial enlargement of Fig. (b); (f) partial enlargement of Fig. (c)
    Ming Zhao, Ximing Wang, Xiaohui Zhang, Wang Zhang. Experimental Research onMacroscopic Fourier Ptychography Super-Resolution Imaging[J]. Laser & Optoelectronics Progress, 2019, 56(12): 121101
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