Infrared and Laser Engineering, Volume. 52, Issue 1, 20220292(2023)
Single-image super-resolution reconstruction for continuous-wave terahertz imaging systems
[1] Ouchi T, Kajiki K, Koizumi T, et al. Terahertz imaging system for medical applications and related high efficiency Terahertz devices[J]. J Infrared Millim Terahertz Waves, 35, 118-130(2014).
[2] Chen Z, Ma X Y, Zhang B, et al. A survey on Terahertz communications[J]. China Commun, 16, 1-35(2019).
[3] Ge H Y, Lv M, Lu X J, et al. Applications of THz spectral imaging in the detection of agricultural products[J]. Photonics, 8, 518(2021).
[4] Liu Xinyuan, Zeng Haomin, Tian Xin, et al. Transmission simulation and safety analysis of terahertz radiation in skin[J]. Optics and Precision Engineering, 29, 999-1007(2021).
[5] Wang Yuye, Jiang Bozhou, Xu Degang, et al. Continuous terahertz wave biological tissue imaging technology based on focal plane array[J]. Acta Optica Sinica, 41, 0711001(2021).
[6] Li Yashang, Zhao Guozhong, Wei Qingyun, et al. Study on the performance of terahertz passive imaging system[J]. Infrared and Laser Engineering, 49, 0404005(2020).
[7] Li Y D, Hu W D, Zhang X, et al. Adaptive terahertz image super-resolution with adjustable convolutional neural network[J]. Opt Express, 28, 22200-22217(2020).
[8] Zhang Saiwen, Deng Yaqi, Wang Chong, et al. Research on super-resolution fluorescence microscopy imaging based on multiple measurement vector compressed sensing[J]. Infrared and Laser Engineering, 50, 20210484(2021).
[9] Zhao Haoguang, Qu Hanshi, Wang Xin, et al. Super-resolution reconstruction of micro-scanning images[J]. Optics and Precision Engineering, 29, 2456-2464(2021).
[10] Liu Mingxin, Zhang Xin, Wang Lingjie, et al. Optimization of matching coded aperture with detector based on compressed sensing spectral imaging technology[J]. Chinese Optics, 13, 290-301(2020).
[11] [11] Li W, Li B, Li P F. Image superresolution via sparse representation local texture constrain[C]12th IEEE Conference on Industrial Electronics Applications (ICIEA), 2017: 10441049.
[12] Wu Y Q, Pan S H, Bi S J, et al. Kurdyka-Lojasiewicz property of zero-norm composite functions[J]. J Optim Theory Appl, 188, 94-112(2020).
[13] Xu M X, Yang Y, Sun Q S, et al. Image super-resolution reconstruction based on adaptive sparse representation[J]. Concurr Comput -Pract Exp, 30, e4968(2018).
[14] Wang M J, Feng Z D, Wu J G. Pixel super-resolution lensless in-line holographic microscope with hologram segmentation[J]. Chin Opt Lett, 17, 110901(2019).
[15] [15] Aamir M, Rehmanp Z, Pu Y F, et al. Image enhancement in varying light conditions based on wavelet transfm[C]16th IEEE International Computer Conference on Wavelet Active Media Technology Infmation Processing (ICCWAMTIP), 2019: 317322.
[16] Chen Tianze, Ge Baozhen, Luo Qijun. Pose estimation for free binocular cameras based on reprojection error optimization[J]. Chinese Optics, 14, 1400-1409(2021).
[17] Wu L Y, Zhang X G, Deng J F. Making a “Completely blind” image quality analyzer[J]. IEEE Signal Process Lett, 20, 209-212(2013).
[18] [18] Li Q H, Fang Y M, Lin W S, et al. Gradientweighted structural similarity f image quality assessments[C]IEEE International Symposium on Circuits Systems (ISCAS), Lisbon, IEEE, 2015: 21652168.
[19] Shi Z F, Zhang J P, Cao Q J, et al. Full-reference image quality assessment based on image segmentation with edge feature[J]. Signal Process, 145, 99-105(2018).
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Huan Wang, Liying Lang, Yajun Pang, Lei Zhang, Wei Zheng, Sixing Xi. Single-image super-resolution reconstruction for continuous-wave terahertz imaging systems[J]. Infrared and Laser Engineering, 2023, 52(1): 20220292
Category: Image processing
Received: Apr. 10, 2022
Accepted: --
Published Online: Feb. 9, 2023
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