Citation: | QUAN Xiang-qian, CHEN Xiang-zi, QUAN Yong-qian, LI Chen. Analysis and research progress of deep-sea optical illumination and imaging system[J]. Chinese Optics, 2018, 11(2): 153-165. doi: 10.3788/CO.20181102.0153 |
[1] |
JAFFE J S. To sea and to see:that is the answer[J]. Methods in Oceanography, 2016, 15:3-20. https://www.sciencedirect.com/science/article/pii/S2211122016300238
|
[2] |
ARNAUBEC A, OPDERBECKE J, ALLAIS A G, et al. . Optical Mapping with the ARIANE HROV at IFREMER: the matisse processing Tool[C]. OCEANS 2015, IEEE, 2015: 1-6. http://www.researchgate.net/publication/308825792_Optical_mapping_with_the_ARIANE_HROV_at_IFREMER_The_MATISSE_processing_tool
|
[3] |
KWASNITSCHKA T, KÖSER K, STICKLUS J, et al.. DeepSurveyCam-a deep ocean optical mapping system[J]. Sensors, 2016, 16(2), Doi:10.33901s16020164.
|
[4] |
孙传东, 李驰, 张建华, 等.水下成像镜头的光学设计[J].光学精密工程, 1998, 6(5):5-11. http://www.eope.net/fileup/PDF/19980502.pdf
SUN CH D, LI CH, ZHANG J H, et al.. Optical design of the lens for underwater imaging system[J]. Opt. Precision Eng., 1998, 6(5):5-11.(in Chinese) http://www.eope.net/fileup/PDF/19980502.pdf
|
[5] |
Imaging Marine Life: Macrophotography and Microscopy Approaches for Marine Biology[M]. New Jersey: John Wiley & Sons, 2013.
|
[6] |
WANG B, SOCOLOFSKY S A. A deep-sea, high-speed, stereoscopic imaging system for in situ measurement of natural seep bubble and droplet characteristics[J]. Deep Sea Research Part Ⅰ:Oceanographic Research Papers, 2015, 104:134-148. doi: 10.1016/j.dsr.2015.08.001
|
[7] |
JAFFE J S. Underwater optical imaging:the past, the present, and the prospects[J]. IEEE Journal of Oceanic Engineering, 2015, 40(3):683-700. doi: 10.1109/JOE.2014.2350751
|
[8] |
CHEN J, ZHANG Q, ZHANG A, et al. . 7000M lander design for hadal research[C]. OCEANS 2014, IEEE, 2014: 1-4. http://www.researchgate.net/publication/281687657_7000M_lander_design_for_hadal_research
|
[9] |
KOCAK D M, CAIMI F M. The current art of underwater imaging-with a glimpse of the past and vision of the future[J]. Marine Technology Society Journal, 2005, 39(3):5-26. doi: 10.4031/002533205787442576
|
[10] |
郑玉权, 王慧, 王一凡.星载高光谱成像仪光学系统的选择与设计[J].光学精密工程, 2009, 17(11):2629-2637. http://www.eope.net/fileup/PDF/2008-0918.pdf
ZHENG Y Q, WANG H, WANG Y F. Selection and design of optical systems for spaceborne hyperspectral imagers[J]. Opt. Precision Eng., 2009, 17(11):2629-2637.(inChinese) http://www.eope.net/fileup/PDF/2008-0918.pdf
|
[11] |
ROSTON J, BRADLEY C, COOPERSTOCK J R. Underwater window: high definition video on VENUS and NEPTUNE[C]. OCEANS 2007, IEEE, 2007: 1-8. http://www.researchgate.net/publication/224305670_underwater_window_high_definition_video_on_venus_and_neptune
|
[12] |
PARIS C B, ATEMA J, IRISSON J O, et al.. Reef odor:a wake up call for navigation in reef fish larvae[J]. PloS One, 2013, 8(8):e72808. doi: 10.1371/journal.pone.0072808
|
[13] |
Deepsea Corporation, http://www.deepsea.com/[EB/OL]. San Diego, California.
|
[14] |
SINGH H, CAN A, EUSTICE R, et al.. Seabed AUV offers new platform for high-resolution imaging[J]. EOS, Transactions American Geophysical Union, 2004, 85(31):289-296. http://www.researchgate.net/publication/245586190_SeaBED_AUV_offers_new_platform_for_high-resolution_imaging
|
[15] |
CAIMI F M, KOCAK D M, DALGLEISH F, et al. . Underwater imaging and optics: recent advances[C]. OCEANS 2008, IEEE, 2008: 1-9. http://www.researchgate.net/publication/224605203_Underwater_imaging_and_optics_Recent_advances
|
[16] |
SAHU P, GUPTA N, SHARMA N. A survey on underwater image enhancement techniques[J]. International Journal of Computer Applications, 2014, 87(13):19-23. doi: 10.5120/15268-3743
|
[17] |
LU H, LI Y, SERIKAWA S, et al. . Image restoration method for deep-sea tripod observation systems in the South China Sea[C]. MTS/IEEE OCEANS 2015, IEEE, 2015: 1-6. http://www.researchgate.net/publication/315928925_Image_restoration_method_for_deep-sea_tripod_observation_systems_in_the_South_China_Sea
|
[18] |
郑峰, 刘丽莹, 刘小溪, 等.多主色LED照明光源的相关色温调控[J].光学精密工程, 2015, 23(4):926-933. http://www.opticsjournal.net/Abstract.htm?id=OJ150520000143oVrXu1
ZHENG F, LIU L Y, LIU X X, et al.. Control of correlated color temperature for multi-primary color LED illumination[J]. Opt. Precision Eng., 2015, 23(4):926-933.(in Chinese) http://www.opticsjournal.net/Abstract.htm?id=OJ150520000143oVrXu1
|
[19] |
苏方雨.深海用水下照明灯具[J].海洋渔业, 1990, 1:39-42. http://www.cqvip.com/QK/93342X/1990001/271550.html
SUN F Y. Lighting lamps in deep-sea[J]. Marine Fisheries, 1990, 1:39-42.(in Chinese) http://www.cqvip.com/QK/93342X/1990001/271550.html
|
[20] |
KAWAKAMI, TAKASHI SATO, TOMOO USAMI, Sachiko submersible illumination device: JP, 2002100203[P]. 2002-04-05.
|
[21] |
CHANG P C Y, FLITTON J C, HOPCRAFT K I, et al. Improving visibility depth in passive underwater imaging by use of polarization[J]. Applied Optics, 2003, 42(15):2794-2803. doi: 10.1364/AO.42.002794
|
[22] |
WIDDER E A, ROBISON B H, REISENBICHLER K R, et al.. Using red light for in situ observations of deep-sea fishes[J]. Deep Sea Research Part Ⅰ:Oceanographic Research Papers, 2005, 52(11):2077-2085. doi: 10.1016/j.dsr.2005.06.007
|
[23] |
HARDY K R, OLSSON M S, SANDERSON J R, et al. . High brightness light emitting diodes for ocean applications[C]. OCEANS 2007, IEEE, 2007: 1-4. http://www.researchgate.net/publication/224305727_High_Brightness_Light_Emitting_Diodes_for_Ocean_Applications
|
[24] |
JAFFE J S. Enhanced extended range underwater imaging via structured illumination[J]. Optics Express, 2010, 18(12):12328-12340. doi: 10.1364/OE.18.012328
|
[25] |
楼志斌.半导体照明技术在水下探测设备中的应用研究[J].船舶工程, 2011, 33(6):96-99. http://industry.wanfangdata.com.cn/dl/Detail/Periodical?id=Periodical_cbgc201106025
LOU ZH B. Application of semiconductor lighting technology in underwater detection equipment[J]. Ship Engineering, 2011, 33(6):96-99.(in Chinese) http://industry.wanfangdata.com.cn/dl/Detail/Periodical?id=Periodical_cbgc201106025
|
[26] |
OLSSON M S. Submersible multi-color LED illumination system: US, 8172434[P]. 2012-05-08.
|
[27] |
聂瑛, 何志毅.不同波长光源照明的水下成像及光学图像实时处理[J].光学学报, 2014, 34(7):59-65. http://jz.docin.com/p-1544637296.html
NIE Y, HE ZH Y. Underwater imaging and real-time optical image processing under illumination by light sources with different wavelengths[J]. Acta Optica Sinica, 2014, 34(7):59-65.(in Chinese) http://jz.docin.com/p-1544637296.html
|
[28] |
CONOVER G, POTUCEK K L, SLONIM L, et al. . Programmable underwater lighting system: US, 9084314[P]. 2015-07-14.
|
[29] |
OH, LEE S W, MOON J. Underwater multispectral image acquisition system using multi-wavelength light source: KR, 2015/006769[P]. 2016-05-12.
|
[30] |
赵会富, 刘华, 孙强, 等.基于折射/全反射/反射/折射结构的准直系统的设计[J].光学精密工程, 2011, 19(7):1472-1479. http://www.opticsjournal.net/abstract.htm?id=OJ1108150000453y6B9E
ZHAO H F, LIU H, SUN Q, et al.. Design of RIXR LED collimatine system[J]. Opt. Precision Eng., 2011, 19(7):1472-1479.(in Chinese) http://www.opticsjournal.net/abstract.htm?id=OJ1108150000453y6B9E
|
[31] |
冯奇斌, 李亚妮, 李其功, 等.基于发光二极管配光曲线设计自由曲面透镜[J].光学精密工程, 2016, 24(8):1884-1893. http://kns.cnki.net/KCMS/detail/detail.aspx?filename=gxjm201608009&dbname=CJFD&dbcode=CJFQ
FENG Q B, LI Y N, LI Q G, et al.. Design of double freeform surface lens based on LED radiation characteristics[J]. Opt. Precision Eng., 2016, 24(8):1884-1893.(in Chinese) http://kns.cnki.net/KCMS/detail/detail.aspx?filename=gxjm201608009&dbname=CJFD&dbcode=CJFQ
|
[32] |
OLSSON M S, PARKER S B, RIMER D G. Deep submersible light assembly with dry pressure dome: US, 4996635[P]. 1991-02-26.
|
[33] |
朱海荣, 朱海, 刘金涛, 等.水下航行器光学隐蔽深度测量系统[J].光学精密工程, 2015, 23(10):2778-2784. http://www.eope.net/gxjmgc/article/2015/2015-10-2778.htm
ZHU H R, ZHU H, LIU J T, et al.. Measurement system optical concealment depth of underwater vehicle[J]. Opt. Precision Eng., 2015, 23(10):2778-2784.(in Chinese) http://www.eope.net/gxjmgc/article/2015/2015-10-2778.htm
|
[34] |
郭太良, 周雄图, 陈恩果, 等.用于集成成像的针孔/微透镜组合阵列设计与仿真[J].液晶与显示, 2013, 28(6):855-859. http://www.opticsjournal.net/abstract.htm?id=OJ140102000306cJfMiO
GUO T L, ZHOU X T, CHEN E G, et al.. Design and simulation of combined pinholes/microlens array for integral imaging[J]. Chinese Journal of Liquid Crystals and Displays, 2013, 28(6):855-859.(in Chinese) http://www.opticsjournal.net/abstract.htm?id=OJ140102000306cJfMiO
|
[35] |
ZHENG B, ZHENG H, ZHAO L F, et al. . Underwater 3D target positioning by inhomogeneous illumination based on binocular stereo vision[C]. MTS/IEEE OCEANS 2012, IEEE, 2012: 1-4. http://www.researchgate.net/publication/261041155_Underwater_3D_target_positioning_by_inhomogeneous_illumination_based_on_binocular_stereo_vision
|
[36] |
BURKE J. Light conduit underwater illumination system: US, 20160114868[P]. 2016-04-28.
|
[37] |
薛庆生, 陈伟.改进的宽谱段车尔尼-特纳光谱成像系统设计[J].光学精密工程, 2012, 20(2):233-240. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=gxjmgc201202004
XUE Q SH, CHEN W. Design of modified Czerny-Turner spectral imaging system with wide spectral region[J]. Opt. Precision Eng., 2012, 20(2):233-240.(in Chinese) http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=gxjmgc201202004
|
[38] |
全向前, 阳宁, 陈祥子, 等. 一种基于非均匀场的深海照明方法及系统: CN, 106793428A[P]. 2017-05-31.
QUAN X Q, YANG N, CHEN X Z, et al. . A method and system of deep-sea lighting based on non-uniform field: CN, 106793428A[P]. 2017-05-31. (in Chinese)
|
[39] |
孙传东, 陈良益, 高立民, 等.水的光学特性及其对水下成像的影响[J].应用光学, 2000, 21(4):39-46. http://d.wanfangdata.com.cn/Periodical_yygx200004010.aspx
SUN CH D, CHEN L Y, GAO L M, et al.. Water optical properties and their effect on underwater imaging[J]. Journal of Applied Optics, 2000, 21(4):39-46.(in Chinese) http://d.wanfangdata.com.cn/Periodical_yygx200004010.aspx
|
[40] |
熊志奇.深海区光学成像系统的设计和应用[J].水雷战与舰船防护, 2003, 3:33-38. http://www.opticsjournal.net/Journals/lop.htm?action=post&oid=PT180309000157jPmSp
XIONG ZH Q. The design and application of optical imaging system in deep sea area[J]. Mine Warfare & Ship Self-defence, 2003, 3:33-38.(in Chinese) http://www.opticsjournal.net/Journals/lop.htm?action=post&oid=PT180309000157jPmSp
|
[41] |
GORMAN G A. Field deployable dynamic lighting system for turbid water imaging[D]. Massachusetts: Massachusetts Institute of Technology, 2011. http://www.researchgate.net/publication/267370659_FIELD_DEPLOYABLE_DYNAMIC_LIGHTING_SYSTEM_FOR_TURBID_WATER_IMAGING
|
[42] |
石晟玮, 王江安, 蒋兴舟, 等.海水衰减系数的多角度后向散射测量技术研究[J].金宝搏188软件怎么用
与红外, 2008, 38(5):417-420. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=jgyhw200805003
SHI SH W, WANG J A, JIANG X ZH, et al.. A new measurement study of attenuation coefficient using multi-angle backscattering signals[J]. Laser & Infrared, 2008, 38(5):417-420.(in Chinese) http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=jgyhw200805003
|
[43] |
黄有为, 金伟其, 丁琨, 等.基于光束空间展宽的水下前向散射成像模型[J].红外与金宝搏188软件怎么用
工程, 2009, 38(4):669-673. http://www.airitilibrary.com/Publication/alDetailPrint?DocID=10072276-200908-200911110003-200911110003-669-673%2b701
HUANG Y W, JING W Q, DING K, et al.. Underwater forward scattering imaging model based on beam spatial broadening[J]. Infrared and Laser Engineering, 2009, 38(4):669-673.(in Chinese) http://www.airitilibrary.com/Publication/alDetailPrint?DocID=10072276-200908-200911110003-200911110003-669-673%2b701
|
[44] |
沈凌敏, 张琦, 何俊华, 等.水下微光高速摄像照明技术的研究与应用[J].微计算机信息, 2010, 26(1):111-112, 143. http://www.doc88.com/p-801812474550.html
SHEN L M, ZHANG Q, HE J H, et al.. Research and application of illumination for underwater low-light-level high-speed photograph system[J]. Microcomputer Information, 2010, 26(1):111-112, 143.(in Chinese) http://www.doc88.com/p-801812474550.html
|
[45] |
张法全, 王国富, 叶金才, 等.水下光学监控系统照明方式的研究[J].光子学报, 2011, 40(7):1061-1065. https://core.ac.uk/display/71622461
ZHANG F Q, WANG G F, YE J C, et al.. Lighting pattern of underwater optical monitoring system[J]. Acta Photonic Sinica, 2011, 40(7):1061-1065.(in Chinese) https://core.ac.uk/display/71622461
|
[46] |
赵欣慰, 金韬, 池灏, 等.不同光照条件下水下成像背景光的建模与研究[J].物理学报, 2015, 64(10):104201. doi: 10.7498/aps.64.104201
ZHAO X W, JIN T, CHI H, et al.. Modeling and simulation of the background light in underwater imaging under different illumination conditions[J]. Acta Physica Sinica, 2015, 64(10):104201.(in Chinese) doi: 10.7498/aps.64.104201
|
[47] |
TAN C S, SEET G, SLUZEK A, et al.. A novel application of range-gated underwater laser imaging system(ULIS) in near-target turbid medium[J]. Optics and Lasers in Engineering, 2005, 43(9):995-1009. doi: 10.1016/j.optlaseng.2004.10.005
|
[48] |
HUANG Y W, CAO F M, JIN W Q, et al.. Underwater pulsed laser range-gated imaging model and its effect on image degradation and restoration[J]. Optical Engineering, 2014, 53(6):061608. doi: 10.1117/1.OE.53.6.061608.full
|
[49] |
DALGLEISH F R, CAIMI F M, BRITTON W B, et al. . An AUV-deployable pulsed laser line scan(PLLS) imaging sensor[C]. OCEANS 2007, IEEE, 2007: 1-5. http://www.researchgate.net/publication/4318200_An_AUV-deployable_pulsed_laser_line_scan_(PLLS)_imaging_sensor
|
[50] |
徐正平, 沈宏海, 姚园, 等.直接测距型无扫描金宝搏188软件怎么用
主动成像验证系统[J].光学精密工程, 2016, 24(2):251-259. http://industry.wanfangdata.com.cn/dl/Detail/Periodical?id=Periodical_gxjmgc201602002
XU ZH P, SHEN H H, YAO Y, et al.. Scannerless laser active imaging validating system by directly ranging[J]. Opt. Precision Eng., 2016, 24(2):251-259.(in Chinese) http://industry.wanfangdata.com.cn/dl/Detail/Periodical?id=Periodical_gxjmgc201602002
|
[51] |
李灿, 宋淑梅, 刘英, 等.折反式眼底相机光学系统设计[J].光学精密工程, 2012, 20(8):1710-1717. http://www.eope.net/gxjmgc/CN/abstract/abstract11029.shtml
LI C, SONG SH M, LIU Y, et al.. Design of optical system for catadioptric fundus camera[J]. Optics and Precision Engineering, 2012, 20(8):1710-1717.(in Chinese) http://www.eope.net/gxjmgc/CN/abstract/abstract11029.shtml
|
[52] |
MacDONALD I R, REILLY F F, BLINCOW M, et al. . Deep-ocean use of the sm2000 laser line scanner on submarine NR-1 demonstrates system potential for industry and basic science[C]. MTS/IEEE OCEANS 1995, IEEE, 1995: 555-565. http://www.researchgate.net/publication/3666436_Deep-ocean_use_of_the_SM2000_laser_line_scanner_on_submarine_NR-1_demonstrates_system_potential_for_industry_and_basic_science
|
[53] |
MINOR L G. Dual mode semi-active laser/laser radar seeker: US, 6262800[P]. 2001-07-17.
|
[54] |
JAFFE J S. Development of a laser line scan lidar imaging system for auv use[R]. Scripps Institution of Oceanography, La Jolla CA, 2010. http://www.researchgate.net/publication/235191354_Development_of_a_Laser_Line_Scan_LIDAR_Imaging_System_for_AUV_Use
|
[55] |
沈凌云, 郎百和, 朱明, 等.数字直接制版系统的金宝搏188软件怎么用
扫描成像设计[J].液晶与显示, 2012, 27(5):687-691. http://www.cnki.com.cn/Article/CJFDTotal-XDDJ201610011.htm
SHEN L Y, LANG B H, ZHU M, et al.. Design of laser scanning imaging for digital computer-to-plate system[J]. Chinese Journal of Liquid Crystals and Displays, 2012, 27(5):687-691.(in Chinese) http://www.cnki.com.cn/Article/CJFDTotal-XDDJ201610011.htm
|
[56] |
SHASHAR N, SABBAH S, CRONIN T W. Transmission of linearly polarized light in seawater:implications for polarization signaling[J]. Journal of Experimental Biology, 2004, 207(20):3619-3628. doi: 10.1242/jeb.01187
|
[57] |
CRONIN T W, SHASHAR N, CALDWELL R L, et al.. Polarization vision and its role in biological signaling[J]. Integrative and Comparative Biology, 2003, 43(4):549-558. doi: 10.1093/icb/43.4.549
|
[58] |
TREIBITZ T, SCHECHNER Y Y. Active polarization descattering[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 2009, 31(3):385-399. doi: 10.1109/TPAMI.2008.85
|
[59] |
MASSOT-CAMPOS M, OLIVER-CODINA G. Optical sensors and methods for underwater 3D reconstruction[J]. Sensors, 2015, 15(12):31525-31557. doi: 10.3390/s151229864
|
[60] |
HARDY K, BULMAN T, CAMERON J, et al. . Hadal landers: the DEEPSEA CHALLENGE ocean trench free vehicles[C]. MTS/IEEE OCEANS 2013, IEEE, 2013: 1-10. https://www.researchgate.net/publication/286411135_Hadal_landers_The_DEEPSEA_CHALLENGE_ocean_trench_free_vehicles
|
[61] |
OLSON R J, SOSIK H M. A submersible imaging-in-flow instrument to analyze nano-and microplankton:imaging flow cytobot[J]. Limnology and Oceanography:Methods, 2007, 5(6):195-203. doi: 10.4319/lom.2007.5.195
|
[62] |
付强, 姜会林, 王晓曼, 等.空间金宝搏188软件怎么用
通信研究现状及发展趋势[J].中国光学, 2012, 5(2):116-125. //www.illord.com/CN/abstract/abstract8803.shtml
FU Q, JIANG H L, WANG X M, et al.. Research status and development trend of space laser communication[J]. Chinese Optics, 2012, 5(2):116-125.(in Chinese) //www.illord.com/CN/abstract/abstract8803.shtml
|
[63] |
SIERACKI M E, BENFIELD M, HANSON A, et al.. Optical plankton imaging and analysis systems for ocean observation[J]. Proceedings of Ocean OBS, 2010, 9:21-25. https://www2.whoi.edu/staff/hsosik/wp-content/uploads/sites/11/2017/03/Sieracki_etal_OceanObs2009.pdf
|
[64] |
SCHMID M S, AUBRY C, GRIGOR J, et al.. The LOKI underwater imaging system and an automatic identification model for the detection of zooplankton taxa in the Arctic Ocean[J]. Methods in Oceanography, 2016, 15:129-160. https://www.researchgate.net/publication/301891643_The_LOKI_underwater_imaging_system_and_an_automatic_identification_model_for_the_detection_of_zooplankton_taxa_in_the_Arctic_Ocean
|
[65] |
BRISE O-AVENA C, ROBERTS P L D, FRANKS P J S, et al.. ZOOPS-O 2:A broadband echosounder with coordinated stereo optical imaging for observing plankton in situ[J]. Methods in Oceanography, 2015, 12:36-54. doi: 10.1016/j.mio.2015.07.001
|
[66] |
MULLEN A D, TREIBITZ T, ROBERTS P L D, et al.. Underwater microscopy for in situ studies of benthic ecosystems[J]. Nature Communications, 2016, 7:12093. doi: 10.1038/ncomms12093
|
[67] |
JOHNSE G, VOLENT Z, DIERSSEN H, et al.. Underwater hyperspectral imagery to create biogeochemical maps of seafloor properties[J]. Subsea Optics and Imaging, 2013:508-535 https://www.sciencedirect.com/science/article/pii/B9780857093417500200
|