• Infrared and Laser Engineering
  • Vol. 50, Issue 3, 20200277 (2021)
Kun Zhong, Wei Su, Bo Peng, and Shaling Huang
Author Affiliations
  • Institute of Electronic Engineering, China Academy of Engineering Physics, Mianyang 621999, China
  • show less
    DOI: 10.3788/IRLA20200277 Cite this Article
    Kun Zhong, Wei Su, Bo Peng, Shaling Huang. Design of 4f emission optical system for underwater laser circumferential scanning[J]. Infrared and Laser Engineering, 2021, 50(3): 20200277 Copy Citation Text show less
    References

    [1] Fengmei Cao, Weiqi Jin, Youwei Huang, . Review of underwater opto-electrical imaging technology and equipment (II). Infrared Technology, 33, 125-132(2011).

    [2] Fengmei Cao, Weiqi Jin, Youwei Huang, . Review of underwater opto-electrical imaging technology and equipment (I)—Underwater laser range-gated imaging technology. Infrared Technology, 33, 63-69(2011).

    [3] Huang Xuan, Yang Fang, Song Jian. Hybrid LD and LED-based underwater optical communication: state-of-the-art, opportunities, challenges, and trends. Chinese Optics Letters, 17, 100002(2019).

    [4] Jingjing Wang, Changfeng Tian, Xinghai Yang, et al. Underwater wireless optical communication system using a 16-QAM modulated 450-nm laser diode based on an FPGA. Applied Optics, 58, 4553-4559(2019).

    [5] Jiemei Wang, Chunhui Lu, Shangbin Li, et al. 100 m/500 Mbps underwater optical wireless communication using an NRZ-OOK modulated 520 nm laser diode. Optics Express, 27, 12171-12181(2019).

    [6] Hong Kang Chun, Trichili Abderrahmen, Alkhazragi Omar, et al. Ultraviolet-to-blue color-converting scintillating-fibers photoreceiver for 375-nm laser-based underwater wireless optical communication. Optics Express, 27, 30450-30461(2019).

    [7] Muhsin Caner Gökçe, Yahya Baykal, Yalçın Ata. Mary phase shift keyingsubcarrier intensity modulation perfmance in strong oceanic turbulence[J]. Optical Engineering, 2019, 58(5): 056105.

    [8] Wei Zhong, Xiaohui Zhang, Hongwei Han. Irradiance spatial distribution model of laser source for underwater range-gated imaging radar. Acta Optica Sinica, 36, 0401005(2016).

    [9] Na Liu, Jieyao Ke, Suhui Yang, . Simulation and analysis on underwater transmission characteristics of Gaussian pulse lasers with carrier modulation. Acta Optica Sinica, 38, 0401003(2018).

    [10] Lin Gan, He Zhang. Underwater laser autonomous scanning short-range azimuth detection method based on fluid-driven. Chinese Journal of Lasers, 46, 0304004(2019).

    [11] Xiaoyu Zhai, Zhaopeng Meng, Haoyun Zhang, et al. Underwater distance measurement using frequency comb laser. Optics Express, 27, 6757-6769(2019).

    [12] A Maccarone, F M D Rocca, A Mccarthy, et al. Three-dimensional imaging of stationary and moving targets in turbid underwater environments using a single-photon detector array. Optics Express, 27, 28437-28456(2019).

    [13] Alem Nour, Pellen Fabrice, Le Brun Guy, et al. Extra-cavity radiofrequency modulator for a lidar radar designed for underwater target detection. Applied Optics, 56, 7367-7372(2017).

    [14] Lin Qi, Yakun Ju, Junyu Dong, et al. Refractive laser triangulation and photometric stereo in underwater environment. Optical Engineering, 56, 113101(2017).

    [15] Zhiyi He, Meixing Luo, Xiyu Song, et al. Laser line scan underwater imaging by complementary metal-oxide-semiconductor camera. Optical Engineering, 56, 123101(2017).

    [16] D W Illig, W D Jemison, L J Mullen. Independent component analysis for enhancement of an FMCW optical ranging technique in turbid waters. Applied Optics, 55, c25-c33(2017).

    [17] B Cochenour, K Dunn, A Laux, et al. Experimental measurements of the magnitude and phase response of high-frequency modulated light underwater. Applied Optics, 56, 4019-4024(2017).

    [18] Bingting Zha, Hailu Yuan, Yayun Tan. Ranging precision for underwater laser proximity pulsed laser target detection. Optics Communications, 58, 81-87(2019).

    [19] Mingjian Cheng, Lixin Guo, Jiangting Li, et al. Propagation of an optical vortex carried by a partially coherent Laguerre-Gaussian beam in turbulent ocean. Applied Optics, 55, 4642-4648(2016).

    [20] Yongxu Li, Zhiwei Cui, Yiping Han, et al. Channel capacity of orbital-angular-momentum-based wireless communication systems with partially coherent elegant Laguerre-Gaussian beams in oceanic turbulence. Journal of the Optical Society of America A, 36, 471-477(2019).

    [21] Hou W, Church P, Fournier G, et al. Overview of a hybrid underwater camera system [C]Ocean Sensing Moniting VI, SPIE Sensing Technology + Applications, 2014, 9111: 91110O.

    [22] Laurenzis M, Christnacher F, Scholz T, et al. Underwater laser imaging experiments in the Baltic Sea [C]ElectroOptical Remote Sensing, Photonic Technologies, Applications VIII; Military Applications in Hyperspectral Imaging High Spatial Resolution Sensing II, Proceedings of SPIE, 2014, 9250: 92500D.

    [23] Yayun Tan, He Zhang, Bingting Zha. Underwater single beam circumferentially scanning detection system using range-gated receiver and adaptive filter. Journal of Modern Optics, 64, 1648-1656(2017).

    [24] Bing Ouyang, Weilin Hou. Compressive line sensing imaging system in a controlled hybrid scattering environment. Optical Engineering, 58, 023102(2019).

    [25] Stemmler S, Werner C S, Reiterer A. Development of a timeofflight laser scanning system f underwater applications [C]SPIE Remote Sensing, 2019, 11150: 111500M.

    [26] Dawei Tu, Guoliang Xiao, Xu Zhang, et al. Laser stripe matching algorithm with coplanar constraint in underwater laser scanning systems. Optical Engineering, 58, 114108(2019).

    [27] Xiangjin Zhang, Jing Guo, He Zhang. Far-filed spot compression shaping for the laser fuze. Infrared and Laser Engineering, 42, 1453-1457(2013).

    [28] Yi Zhong, Ziyao Tang, H Gross. Correction of 2D-telecentric scan systems with freeform surfaces. Optics Express, 28, 3041-3056(2020).

    [29] Qiang Deng, Shenghui Li. Design of high-resolution image square telecentric continuous zoom projection lens based on TIR prism. Infrared and Laser Engineering, 48, 1114005(2019).

    [30] Yuanyuan Li, Chunyan Wang, Zhiqiang Wang. F-θ lens design for high-precision semiconductor laser marking machine. Journal of Applied Optics, 41, 202-208(2020).

    [31] Yang Jiang, Xiangqian Quan, Jie Du, . Design of deep-sea optical imaging system with wide field of view and ultra-high resolution. Optics and Precision Engineering, 27, 2289-2295(2019).

    Kun Zhong, Wei Su, Bo Peng, Shaling Huang. Design of 4f emission optical system for underwater laser circumferential scanning[J]. Infrared and Laser Engineering, 2021, 50(3): 20200277
    Download Citation