Computer Engineering and Applications ›› 2023, Vol. 59 ›› Issue (5): 14-27.DOI: 10.3778/j.issn.1002-8331.2208-0313
• Research Hotspots and Reviews • Previous Articles Next Articles
GUO Yinjing, MA Xinrui, XU Yuecheng, KONG Fang, LYU Wenhong
Online:
2023-03-01
Published:
2023-03-01
郭银景,马新瑞,许越铖,孔芳,吕文红
GUO Yinjing, MA Xinrui, XU Yuecheng, KONG Fang, LYU Wenhong. Overview of Research on Spatial Registration Algorithms of Underwater Opti-Acoustic Images[J]. Computer Engineering and Applications, 2023, 59(5): 14-27.
郭银景, 马新瑞, 许越铖, 孔芳, 吕文红. 水下光声图像空间配准算法研究综述[J]. 计算机工程与应用, 2023, 59(5): 14-27.
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[1] HOZYŃ S.A review of underwater mine detection and classification in sonar imagery[J].Electronics,2021,10(23):2943. [2] WANG Y S,JI Y,WOO H,et al.Acoustic camera-based pose graph SLAM for dense 3-D mapping in underwater environments[J].IEEE Journal of Oceanic Engineering,2021,46(3):829-847. [3] YAMAFUNE K,TORRE R,CASTRO F.Multi-image photogrammetry to record and reconstruct underwater shipwreck sites[J].Journal of Archaeological Method and Theory,2017,24:703-725. [4] KRISHNARAJ N,ELHOSENY M,THENMOZHI M,et al.Deep learning model for real-time image compression in Internet of underwater things(IoUT)[J].Journal of Real-Time Image Processing,2020,17(6):2097-2111. [5] JAFFE J S.Underwater optical imaging:the past,the present,and the prospects[J].IEEE Journal of Oceanic Engineering,2015,40(3):683-700. [6] LIU Y,WANG H,CAI L,et al.Fundamentals and advancements of topology discovery in underwater acoustic sensor networks:a review[J].IEEE Sensors Journal,2021,21(19):21159-21174. [7] TRUCCO A,PALMESE M,REPETTO S.Devising an affordable sonar system for underwater 3-D vision[J].IEEE Transactions on Instrumentation and Measurement,2008,57(10):2348-2354. [8] DIAMANT R,LAMPE L.Low probability of detection for underwater acoustic communication:a review[J].IEEE Access,2018,6:19099-19112. [9] TADDEI T,ZHANG L.Space-time registration-based model reduction of parameterized one-dimensional hyperbolic PDEs[J].EDP Sciences,2021,55(1):99-130. [10] CHENG L,CHEN S,LIU X,et al.Registration of laser scanning point clouds:a review[J].Sensors,2018,18(5):1641. [11] KULKARNI S C,REGE P P.Pixel level fusion techniques for SAR and optical images:a review[J].Information Fusion,2020,59:19-29. [12] ZHOU J C,WEI X J,SHI J Y,et al.Underwater image enhancement via two-level wavelet decomposition maxi-mum brightness color restoration and edge refinement histogram stretching[J].Optics Express,2022,30(10):17290-17306. [13] ZHANG W,ZHUANG P,SUN H H,et al.Underwater image enhancement via minimal color loss and locally adaptive contrast enhancement[J].IEEE Transactions on Image Processing,2022,31:3997-4010. [14] ZHOU J,ZHANG D,ZHANG W.Underwater image enhancement method via multi-feature prior fusion[J].Applied Intelligence,2022:1-23. [15] SAID A B,HADJIDI R,MELKEMI K E,et al.Multispectral image denoising with optimized vector non-local mean filter[J].Digital Signal Processing,2016,58:115-126. [16] CUI J,HU C,XU H.Adaptive median filtering for forward-looking sonar image registration[C]//INTER-NOISE and NOISE-CON Congress and Conference Proceedings,Hog Kong,China,2017:2534-2540. [17] LI S,ZHAO J,ZHANG H,et al.A non-local low-rank algorithm for sub-bottom profile sonar image denoising[J].Remote Sensing,2020,12(14):2336. [18] SANG E,SHEN Z,BIAN H,et al.Sonar image denoising based on HMT model in morphological wavelet domain[C]//2010 International Conference on Image Analysis and Signal Processing,Zhejiang,2010:214-218. [19] 贾伟.利用NSCT循环抽样进行水声图像去噪[J].舰船科学技术,2016,38(24):112-114. JIA W.The underwater acoustic image denoising based on NSCT cycle sampling[J].Ship Science and Technology,2016,38(24):112-114. [20] 刘光宇,曾志勇,曹禹,等.基于密度聚类与灰度变换的NSST域声呐图像去噪[J].湖南大学学报(自然科学版),2022,49(8):186-195. LIU G Y,ZENG Z Y,CAO Y,et al.Sonar image denoising based on density clustering and gray scale transformation in NSST domain[J].Journal of Hunan University(Natural Sciences),2022,49(8):186-195. [21] CHEN P,CAI X W,ZHAO D D,et al.Despeckling for side-scan sonar images based on adaptive block-matching and 3D filtering[J].Opto-Electronic Engineering,2020,47(7):1-10. [22] HUANG Y,LI W,YUAN F.Speckle noise reduction in sonar image based on adaptive redundant dictionary[J].Journal of Marine Science and Engineering,2020,8(10):761. [23] TIAN W,CHEN Z,SHEN J,et al.Underwater sonar image denoising through nonconvex total variation regularization and generalized Kullback-Leibler fidelity[J].Journal of Ambient Intelligence and Humanized Computing,2021:1-15. [24] YE X F,LI P,ZHANG J G,et al.A feature-matching method for side-scan sonar images based on nonlinear scale space[J].Journal of Marine Science and Technology,2016,21(1):38-47. [25] LU B,WANG J,ZHANG Q.A variable exponent high-order variational model for noise removal[J].Journal of Computational Information Systems,2015,11(13):4605-4614. [26] ZHAO D,CAI T,CHEN P,et al.3-D acoustic image denoising for a sonar system with sparse planar arrays[J].IEEE Transactions on Instrumentation and Measurement,2022,71:1-17. [27] KIM J,SONG S,YU S C.Denoising auto-encoder based image enhancement for high resolution sonar image[C]//2017 IEEE Underwater Technology(UT),Busan,2017:1-5. [28] 刘秋逸.基于生成对抗网络的声呐图像生成及盲去噪方法研究[D].哈尔滨:哈尔滨工程大学,2020. LIU Q Y.Generative adversarial networks based sonar image synthesis and blind denoising methods[D].Harbin:Harbin Engineering University,2020. [29] PRIYADHARSINI R,SHARMILA T S.An efficient edge preserving interpolation method for underwater acoustic image resolution enhancement[J].Archives of Acoustics,2022,47(2):267-274. [30] MUTHURAMAN D L,SANTHANAM S M.Contrast improvement on side scan sonar images using retinex based edge preserved technique[J].Marine Geophysical Research,2022,43(2):1-19. [31] YOON K S,KIM W J.Efficient edge‐preserved sonar image enhancement method based on CVT for object recognition[J].IET Image Processing,2019,13(1):15-23. [32] SHI P,LU L,FAN X,et al.A novel underwater sonar image enhancement algorithm based on approximation spaces of random sets[J].Multimedia Tools and Applications,2022,81(4):4569-4584. [33] LIU J,LI B Y,GUAN W X,et al.A scale-adaptive matching algorithm for underwater acoustic and optical images[J].Sensors,2020,20(15):1-13. [34] ABU A,DIAMANT R.Feature set for classification of man-made underwater objects in optical and SAS data[J].Sensors,2022,22(6):6027-6041. [35] SENGUPTA D,GUPTA P,BISWAS A.A survey on mutual information based medical image registration algorithms[J].Neurocomputing,2022,486:174-188. [36] MAJUMDER S,SHEDING S,DURRANT-WHYTE H.Sensor fusion and map building localization for underwater navigation[C]//Proceedings Australian Conference on Robotics and Automation,Honolulu,2000:25-30. [37] MAJUMDER S,ROSENBLATT J,SHEDING S,et al.Map building and localization for underwater navigation[C]//Lecture Notes in Control and Information Sciences:Experimental Robotics VII,2002:511-520. [38] MAJUMDER S,SHEDING S,DURRANT-WHYTE H.Multisensor data fusion for underwater navigation[J].Robotics and Autonomous System,2001,35(2):97-108. [39] LAGUDI A,BIANCO G,MUZZUPAPPA M,et al.An alignment method for the integration of underwater 3D data captured by a stereovision system and an acoustic camera[J].Sensors,2016,16(4):536. [40] 李本源.水下声光图像的尺度自适应匹配方法的研究[D].长春:吉林大学,2021. LI B Y.Research on scale-adaptive matching algorithm for underwater acoustic and optical images[D].Changchun:Jilin University,2021. [41] SONG S M,MICHAEL MERRMANN J,SI B L,et al.Two-dimensional forward-looking sonar image registration by maximization of peripheral mutual information[J].International Journal of Advanced Robotic Systems,2017,14(6):1-17. [42] PARTON S,DALGLEISH F,BEAUJEAN P P,et al.Acquisition and registration of bathymetric acoustic data and MOFSLI(multiple overlapping field of view serial laser imagery)[C]//2013 MTS/IEEE OCEANS,Bergen,2013:1-8. [43] HURTóS N,CUF X,PETILLOT Y,et al.Fourier-based registrations for two-dimensional forward-looking sonar image mosaicking[C]//2012 IEEE/RSJ International Conference on Intelligent Robots and Systems,Vilamoura-Algarve,2012:5298-5305. [44] SAXENA S,POHIT M.Near infrared and visible image registration using whale optimization algorithm[J].International Journal of Applied Metaheuristic Computing,2022,13(1):1-14. [45] ZHANG H M,SHAO N,MENG X K,et al.Fast image matching method and its applications in underwater positioning[C]//2010 International Conference on Electrical and Control Engineering,Wuhan,2010:970-973. [46] YAN H,YANG S W,XUE Q,et al.HR optical and SAR image registration using uniform optimized feature and extend phase congruency[J].International Journal of Remote Sensing,2022,43(1):52-74. [47] LIU X Z,AI Y F,TIAN B,et al.Robust and fast registration of infrared and visible images for electro-optical pod[J].Transactions on Industrial Electronics,2019,66(2):1335-1344. [48] ZHANG L,LI B,TIAN L F,et al.LPPCO:a novel multi-modal medical image registration using new feature descriptor based on the local phase and phase congruency of different orientations[J].Access,2018,6:71976-71987. [49] 孔祥山.基于红外与可见光图像的无人机测距技术研究[D].成都:电子科技大学,2018. KONG X S.Research on UAV ranging technology based on infrared and visible images[D].Chengdu:University of Electronic Science and Technology of China,2018. [50] FAN J W,YE Y X,LIU G C,et al.Phase congruency order-based local structural feature for SAR and optical image matching[J].Geoscience and Remote Sensing Letters,2022,19:1-5. [51] LI Z Y,ZHNAG H T,CHEN J Y.Robust optical and SAR image registration based on phase congruency scale space[J].Geoscience and Remote Sensing Letters,2022,19:6515805. [52] FUNK C J,LEMAIRE I P,SUTTON J L,et al.Apparatus for scanning an underwater area:3775735[P].1973. [53] MORONI D,PASCALI A M,REGGIANNINI M,et al.Underwater scene understanding by optical and acoustic data integration[C]//Proceedings of Meetings on Acoustics ECUA2012,2012. [54] ANSARI S.A review on SIFT and SURF for underwater image feature detection and matching[C]//2019 IEEE International Conference on Electrical,Computer and Communication Technologies(ICECCT),Coimbatore,2019:1-4 [55] 陆军,陈坤,范哲君.点邻域尺度差异描述的点云配准算法[J].国防科技大学学报,2021,43(3):128-134. LU J,CHEN K,FAN Z J.Point cloud registration algorithm based on scale difference descriptor of point neighborhood[J].Journal of National University of Defense,2021,43(3):128-134. [56] BABAEE M,NEGAHDARIPOUR S.3-D object modeling from 2-D occluding contour correspondences by opti-acoustic stereo imaging[J].Computer Vision and Image Understanding,2015,132:56-74. [57] SPEARS A,HOWARD A M,WEAT M,et al.Acoustic sonar and video sensor fusion for landmark detection in an under-ice environment[C]//2014 Oceans-St.John’s,2014:1-8. [58] HUANG Y B,ZHANG Z,XU X L.Image stitching algorithm based on region division for underwater dam crack image[C]//2021 IEEE International Conference on Progress in Informatics and Computing(PIC),Shanghai,2021:112-117. [59] TANG Z J,MA G Q,LU J Q,et al.Sonar image mosaic based on a new feature matching method[J].IET Image Processing,2020,14(10):2149-2155. [60] 李海森,高珏,徐超,等.应用TBD的多波束声呐图像序列SIFT特征追踪[J].哈尔滨工程大学学报,2016,37(8):1009-1014. LI H S,GAO J,XU C,et al.SIFT feature tracking in multi-beam sonar image sequences using the track-before-detect technique[J].Journal of Harbin Engineering University,2016,37(8):1009-1014. [61] ZHANG W Y,ZHOU T,XU C,et al.A SIFT-like feature detector and descriptor for multibeam sonar imaging[J].Journal of Sensors,2021:8845814. [62] 田嘉禾,王宁,陈廷凯,等.基于自适应深度约束的水下双目图像特征匹配[J].中国舰船研究,2021,16(6):124-131. TIAN J H,WANG N,CHEN T K,et al.Adaptive depth constraint-based underwater binocular image feature matching[J].Chinese Journal of Ship Research,2021,16(6):124-131. [63] HAO M,JIN J,ZHOU M C,et al.Robust multisource remote sensing image registration method based on scene shape similarity[J].Photogrammetric Engineering and Remote Sensing,2019,85(10):725-736. [64] ZHU B,YE Y X,YANG C,et al.Fast and robust registration of aerial images and lidar data based on structural features and 3D phase correlation[J].arXiv:2004. 09811,2020. [65] WANG Z Z,LI J S,WANG X,et al.Underwater terrain image stitching based on spatial gradient feature block[J].Computers,Materials & Continua,2022,72(2):4157-4171. [66] SUHARYANTO S,HASIBUAN Z A,ANDONO P N,et al.Contrast limited adaptive histogram equalization for underwater image matching optimization use SURF[C]//2nd International Conference on Enhanced Research and Industrial Application 2020,Yogyakarta,2020. [67] GWON D H,SHIN Y S,KIM Y,et al.Nontemporal rela-tive pose estimation for opti-acoustic bundle adjustment[C]//OCEANS 2016 MTS/IEEE,Monterey,2016:1-5. [68] LI Z L,LAN R S,CHEN Z,et al.Underwater high-precision panoramic 3D image generation[C]//2020 8th International Conference on Digital Home(ICDH),Dalian,2021:39-44. [69] 刘嘉欣.基于声光图像辅助水下AUV导航与目标探测研究[D].长春:吉林大学,2020. LIU J X.Research on underwater AUV navigation and target detection based on acousto-optic image[D].Changchun:Jilin University,2020. [70] YE Y,SHEN L.Hopc:a novel similarity metric based on geometric structural properties for multi-modal remote sensing image matching[J].ISPRS Annals of the Photogrammetry,Remote Sensing and Spatial Information Sciences,2016,3:9. [71] YE Y,LI S,HAO M,et al.Robust optical-to-SAR image matching based on shape properties[J].IEEE Geoscience and Remote Sensing Letters,2017,14:564-568. [72] 王蒙蒙,叶沅鑫,朱柏,等.基于空间约束和结构特征的光学与SAR影像配准[J].武汉大学学报(信息科学版),2022,47(1):141-148. WANG M M,YE Y X,ZHU B,et al.An automatic registration method for optical and SAR images based on spatial constraint and structure features[J].Geomatics and Information Science of Wuhan University,2022,47(1):141-148. [73] XIONG X,XU Q,JIN G W,et al.Rank-based local self-similarity descriptor for optical-to-SAR image matching[J].IEEE Geoscience and Remote Sensing Letters,2020,17(10):1742-1746. [74] ZHANG W R,MIAO J M,LI M F,et al.Research on underwater image registration method based on MSRCR and SIFT[C]//International Conference on Computer Vision and Pattern Analysis,Guangzhou,2022:74-80. [75] YANG L Z,YANG Z L.Underwater image registration based on polar complex exponential transform[C]//Proceedings of 2021 International Conference on Autonomous Unmanned Systems(ICAUS 2021),Singapore,2021:1203-1213. [76] YANG K C,YU L,XIA M,et al.Nonlinear RANSAC with crossline correction:an algorithm for vision-based curved cable detection system[J].Optics and Lasers in Engineering,2021,141:106417. [77] 盛明伟,唐松奇,万磊,等.基于改进CNN-RANSAC的水下图像特征配准方法[J].计算机工程与科学,2020,42(5):859-868. SHENG M W,TANG S Q,WAN L,et al.An underwater image feature registration method based on improved CNN-RANSAC[J].Computer Engineering & Science,2020,42(5):859-868. [78] MACHADO M,ZAFFARI G,RIBEIRO P O,et al.Description and matching of acoustic images using a forward looking sonar:a topological approach[J].IFAC-PapersOnLine,2017,50(1):2317-2322. [79] HUANG S D,XU Z L,TSANG I W,et al.Auto-weighted multi-view co-clustering with bipartite graphs[J].Information Sciences,2020,512:18-30. [80] DOS SANTOS M M,DE GIACOMO G G,DREWS P L J,et al.Satellite and underwater sonar image matching using deep learning[C]//2019 Latin American Robotics Symposium(LARS),2019 Brazilian Symposium on Robotics(SBR) and 2019 Workshop on Robotics in Education(WRE),Rio Grande,2019:109-114. [81] DOS SANTOS M M,DE GIACOMO G G,DREWS P L J,et al.Cross-view and cross-domain underwater localization based on optical aerial and acoustic underwater images[J].IEEE Robotics and Automation Letters,2022,7(2):4969-4974. [82] DOS SANTOS M M,DE GIACOMO G G,DREWS P L J,et al.Matching color aerial images and underwater sonar images using deep learning for underwater localization[J].IEEE Robotics and Automation Letters,2020,5(4):6365-6370. [83] 魏泓安,单小军,郑柯,等.基于深度学习的SAR与光学影像配准方法综述[J].无线电工程,2021,51(12):1363-1372. WEI H A,SHAN X J,ZHENG K,et al.Review of SAR and optical image registration based on deep learning[J].Radio Engineering,2021,51(12):1363-1372. [84] ZHOU X T,YU C L,YUAN X,et al.Nonlinear intensity sonar image matching based on deep convolution features[C]//OCEANS 2022,Chennai,2022:1-5. [85] YANG W L,FAN S S,XU S X,et al.Autonomous underwater vehicle navigation using sonar image matching based on convolutional neural network[J].IFAC-PapersOnline,2019,52(21):156-162. [86] QI Q,ZHANG Y C,TIAN F,et al.Underwater image co-enhancement with correlation feature matching and joint learning[J].Transactions on Circuits and Systems for Video Technology,2022,32(3):1133-1147. [87] VALDENEGRO-TORO M.Improving sonar image patch matching via deep learning[C]//2017 European Conference on Mobile Robots,Paris,2017:1-6. [88] ZAGORUYKO S,KOMODAKIS N.Learning to compare image patches via convolutional neural networks[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition,Boston,2015:4353-4361. [89] FANG Y,HU J,DU C,et al.SAR-optical image matching by integrating siamese U-Net with FFT correlation[J].Geoscience and Remote Sensing Letters,2022,19:1-5. [90] 陈世伟,夏海,杨小冈,等.基于风格迁移不变特征的SAR与光学图像配准算法[J].系统工程与电子技术,2022,44(5):1536-1542. CHEN S W,XIA H,YANG X G,et al.SAR and optical image registration algorithm based on style transfer invariable features[J].Systems Engineering and Electronics,2022,44(5):1536-1542. [91] JANG H,LEE Y,KIM G,et al.CNN-based opti-acoustic transformation for underwater feature matching[J].The Journal of Korea Robotics Society,2020,15(1):1-7. [92] MERKLE N,AUER S,MüLLER R,et al.Exploring the potential of conditional adversarial networks for optical and SAR image matching[J].Selected Topics in Applied Earth Observations and Remote Sensing,2018,11(6):1811-1820. [93] ZHOU X,YU C,YUAN X,et al.A matching algorithm for underwater acoustic and optical images based on image attribute transfer and local features[J].Sensors,2021,21(21):7043. [94] CHO Y,JANG H,MALAV R,et al.Underwater image dehazing via unpaired image-to-image translation[J].International Journal of Control,Automation and Systems,2020,18(3):605-614. [95] TERAYAMA K,SHIN K,MIZUNO K,et al.Integration of sonar and optical camera images using deep neural networkfor fish monitoring[J].Aquacultural Engineering,2019,86:102000. [96] HUO G Y,WU Z Y,LI J B.Underwater object classification in sidescan sonar images using deep transfer learning and semisynthetic training data[J].IEEE Access,2020,8:47407-47418. |
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