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液面三维面型测量技术综述

周文俊 冯诗愚 李超越 彭浩 潘俊

周文俊, 冯诗愚, 李超越, 彭浩, 潘俊. 液面三维面型测量技术综述[J]. 航空动力学报, 2022, 37(2): 375-382. doi: 10.13224/j.cnki.jasp.20210090
引用本文: 周文俊, 冯诗愚, 李超越, 彭浩, 潘俊. 液面三维面型测量技术综述[J]. 航空动力学报, 2022, 37(2): 375-382. doi: 10.13224/j.cnki.jasp.20210090
ZHOU Wenjun, FENG Shiyu, LI Chaoyue, PENG Hao, PAN Jun. Summary of three-dimensional measurement technology of liquid surface[J]. Journal of Aerospace Power, 2022, 37(2): 375-382. doi: 10.13224/j.cnki.jasp.20210090
Citation: ZHOU Wenjun, FENG Shiyu, LI Chaoyue, PENG Hao, PAN Jun. Summary of three-dimensional measurement technology of liquid surface[J]. Journal of Aerospace Power, 2022, 37(2): 375-382. doi: 10.13224/j.cnki.jasp.20210090

液面三维面型测量技术综述

doi: 10.13224/j.cnki.jasp.20210090
基金项目: 国家自然科学基金委员会-中国民用航空局民航联合研究基金(U1933121); 中央高校基本科研业务费专项资金; 江苏高校优势学科建设工程; 金陵科技学院高层次人才科研启动基金(jit-b-202044);南京航空航天大学研究生创新基地(实验室)开放基金(kfjj20200110)
详细信息
    作者简介:

    周文俊(1997-),男,硕士生,主要研究方向为飞机燃油系统燃油惰化、油量测量等。

    通讯作者:

    冯诗愚(1974-),副教授,博士,主要从事飞机燃油箱惰性化、机载制冷、燃油结冰和膜蒸馏技术等方面的研究。E-mail:shiyuf@nuaa.edu.cn

  • 中图分类号: V228.1;TP391

Summary of three-dimensional measurement technology of liquid surface

  • 摘要: 综述了目前被用于液体液面三维重建的光学测量方法,目的是将光学三维测量方法用于飞机燃油箱中来测量油箱油位和燃油晃动时液面的三维形态。主要介绍了立体视觉匹配法、条纹分析法和条纹放置法的基本原理,简述了3种方法在测量液面面形的应用场景和发展现状,分析了3种方法在不同场景使用时的优劣。总结和归纳了液面面型测量技术目前面临的挑战,包括了对透明液体液面三维面型测量研究相对较少、传统三维测量方法无法直接使用、求解速度是否能达到实时动态测量,表明了光学三维测量技术应用于飞机燃油箱油位测量和油面检测将朝着更加快速、精确和智能的方向发展。

     

  • [1] OTT E E.Effects of fuel slosh and vibration on the flammability hazards of hydrocarbon turbine fuels within aircraft fuel tanks:[R].Fort Belvoir,VA:Defense Technical Information Center,1970.
    [2] ABZUG M J.Fuel slosh in skewed tanks[J].Journal of Guidance Control and Dynamics,1996,19(5):1172-1177.
    [3] 谭公礼.多传感器的飞机油箱燃油测量系统的研究[D].南京:南京航空航天大学,2015.
    [4] 黄文锋,于海玉,薛均晓,等.基于计算机视觉的飞机燃油非接触式测量系统[J].图学学报,2019,40(3):466-472.
    [5] 李征鸿,刘麒,刘静.基于计算机视觉的智能燃油测量技术[J].飞机设计,2020,40(3):35-39.
    [6] GHARIB M,WEIGAND A.Experimental studies of vortex disconnection and connection at a free surface[J].Journal of Fluid Mechanics,1996,321:59-86.
    [7] ZUO Chao,ZHANG Xiaolei,HU Yan,et al.Has 3D finally come of age?——an introduction to 3D structured-light sensor[J].Infrared and Laser Engineering,2020,49(3):303001.1-303001.45.
    [8] 隋婧,金伟其.双目立体视觉技术的实现及其进展[J].电子技术应用,2004,30(10):4-6.
    [9] MEADOWS D M,JOHNSON W O,ALLEN J B.Generation of surface contours by moiré patterns[J].Applied Optics,1970,9(4):942-947.
    [10] TAKEDA M,MUTOH K.Fourier transform profilometry for the automatic measurement of 3D object shapes[J].Applied Optics,1983,22(24):3977-3982.
    [11] SU X,CHEN W.Fourier transform profilometry:[J].Optics and Lasers in Engineering,2001,35(5):263-284.
    [12] 苏显渝,谭松新,向立群,等.基于傅里叶变换轮廓术方法的复杂物体三维面形测量[J].光学学报,1998(9):1228-1233.
    [13] CHEN L C,HO H W,NGUYEN X L.Fourier transform profilometry (FTP) using an innovative band-pass filter for accurate 3D surface reconstruction[J].Optics and Lasers in Engineering,2010,48(2):182-190.
    [14] PRZADKA A,CABANE B,PAGNEUX V,et al.Fourier transform pro?lometry for water waves:how to achieve clean water attenuation with diffusive re?ection at the water surface[J].Experiments in Fluids,2012,52(2):519-527.
    [15] SRINIVASAN V,LIU H C,HALIOUA M.Automated phase-measuring profilometry of 3-D diffuse objects[J].Applied Optics,1984,23(18):3105-3126.
    [16] CHANG M,WAN D S.On-line automated phase-measuring profilometry[J].Optics and Lasers in Engineering,1991,15(2):127-139.
    [17] SU X Y,ZHOU W S,BALLY G V,et al.Automated phase-measuring profilometry using defocused projection of a Ronchi grating[J].Optics Communications,1992,94(6):561-573.
    [18] DAI H.Shape measurement by digital speckle temporal sequence correlation with digital light projector[J].Optical Engineering,2001,40(5):793-800.
    [19] XU R,ZHOU F,ZHANG Q.Dynamic 3D shape measurement based on digital speckle projection and temporal sequence correlation[C]∥Optical Metrology and Inspection for Industrial Applications:Ⅳ.Beijing:International Society for Optics and Photonics,2016:100231Z.1-100231Z.6.
    [20] WANG B,ZHANG S,HU H.Development of digital image projection techniques to quantify surface film/rivulet flows[R].New Orleans,US:the 28th Aerodynamic Measurement Technology,Ground Testing,and Flight Testing Conference,2012.
    [21] WUST C,CAPSON D W.Surface profile measurement using color fringe projection[J].Machine Vision and Applications,1991,4(3):193-203.
    [22] IHRKE I,KUTULAKOS K N,LENSCH H,et al.Transparent and specular object reconstruction[J].Computer Graphics Forum,2010,29(8):2400-2426.
    [23] 吴博剑,黄惠.透明物体的三维重建综述[J].计算机辅助设计与图形学学报,2020,32(2):173-180.
    [24] HU H,WANG B,ZHANG K,et al.Quantification of transient behavior of wind-driven surface droplet/rivulet flows using a digital fringe projection technique[J].Journal of Visualization,2015,18(4):705-718.
    [25] HU H,ZHANG K,ZHANG S,et al.Development of a digital image projection technique to measure wind-driven water film flows[R].Grapevine,Texas,US:the 51st AIAA Aerospace Sciences Meeting including the New Horizons Forum and Aerospace Exposition,2013.
    [26] 梁海香.双目立体视觉的波浪表面重建[J].无线电工程,2019,49(8):678-682.
    [27] KURATA J,GRATTAN K T V,UCHIYAMA H,et al.Water surface measurement in a shallow channel using the transmitted image of a grating[J].Review of Scientific Instruments,1990,61(2):736-739.
    [28] MORRIS N,KUTULAKOS K N.Dynamic refraction stereo[R].Beijing:the 10th IEEE International Conference on Computer Vision,2011.
    [29] XIN Z,COX C S.Measuring the two-dimensional struc-ture of a wavy water surface optically:a surface gradient detector[J].Experiments in Fluids,1994,17(4):225-237.
    [30] HILSENSTEIN V.Surface reconstruction of water waves using thermographic stereo imaging[R].Dunedin,New Zealand:Proceedings of the International Conference on Image and Vision Computing New Zealand (IVCNZ),2005.
    [31] 赵玉臣,黄先富,刘战伟,等.透射虚栅计量法及其在液面微变形测量中的应用[J].中国激光,2012,39(9):131-135.
    [32] SULIMAN A,ZHANG Y,AL-TAHIR R.A novel technique for mapping the disparity of off-terrain objects' disparity[R].Halifax,NL,Canada:the 9th Symposium of the International Society for Digital Earth (ISDE),2015.
    [33] DING Y,LI F,YU JI,et al.Dynamic fluid surface acquisition using a camera array[R].Barcelona,Spain:International Conference on Computer Vision,2011.
    [34] QIAN Y,ZHENG Y,GONG M.Simultaneous 3D recon struction for water surface and underwater scene[R].Munich,Germany:European Conference on Computer Vision,2018.
    [35] GRANT I,STEWART N,PADILLA-PEREZ I A.Topographical measurements of water waves using the projection moire method[J].Applied Optics,1990,29(28):3981-3983.
    [36] ZHANG Q C,SU X Y.An optical measurement of vortex shape at a free surface[J].Optics and Laser Technology,2002,34(2):107-113.
    [37] ZHANG K,WEI T,HU H.An experimental investigation on the surface water transport process over an airfoil by using a digital image projection technique[J].Experiments in Fluids,2015,56(9):173-189.
    [38] ZHANG Z.A flexible new technique for camera calibration[J].IEEE(Institute of Electrical and Electronics Engineers) Transactions on Pattern Analysis and Machine Intelligence,2000,22(11):1330-1334.
    [39] NALPANTIDIS L,GASTERATOS A.Stereo vision for robotic applications in the presence of non-ideal lighting conditions[J].Image and Vision Computing,2010,28(6):940-951.
    [40] CAI J.Integration of optical flow and dynamic programming for stereo matching[J].Iet Image Processing,2012,6(3):205-212.
    [41] 张曦,张健.线结构光标定方法综述[J].激光与光电子学进展,2018,55(2):1-11.
    [42] 李爱娟,辛睿,武栓虎.高效线结构光视觉测量系统标定方法[J].激光与光电子学进展,2019,56(22):163-167.
    [43] KE F, XIE J, CHEN Y.A flexible and high precision calibration method for the structured light vision system[J].Optik-International Journal for Light and Electron Optics,2016,127(1):310-314.
    [44] 戴福隆,王朝阳.条纹图像的数字化自动分析处理技术之一:条纹中心法[J].光子学报,1999,28(8):700-706.
    [45] 邹玲,齐越,赖舜男.动态水面数据采集与重建方法[J].软件学报,2016,27(10):2530-2541.
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出版历程
  • 收稿日期:  2021-03-02
  • 刊出日期:  2022-02-28

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