参考文献
[1]王炳和,李宏昌.声呐技术的应用及其最新进展[J].物理,2001,30(8):491-496.
[2]刘晨晨.数学形态学图像处理算法应用研究[D].哈尔滨:哈尔滨工程大学,2003.
[3]田晓东.成像声呐水下目标探测技术及应用研究[D].武汉:海军工程大学,2007.
[4]鱼京善,成二丽.侧扫声呐系统及其在海洋环境监测和保护中的应用[J].海洋测绘,2004,24(2):63-66.
[5]Haniotis S,Cervenka P,Negreira C,et al.Seafloor segmentation using angular backscatter responses obtained at sea with a forward-looking sonar system[J].Applied Acoustics,2015,89(89):306-319.
[6]Barngrover C,Althoff A,Deguzman P,et al.A brain-computer interface(BCI)for the detection ofmine-like objects in sidescan sonar imagery[J].IEEE J of Oceanic Engineering,2016,41(1):123-138.
[7]Williams D P.Fast target detection in synthetic aperture sonar imagery:a new algorithm and largescale performance analysis[J].IEEE Jof Oceanic Engineering,2015,40(1):71-92.
[8]Kumar N,Mitra U,Narayanan SS.Robustobject classification in underwater sidescan sonar images by using reliability-aware fusion of shadow features[J].IEEE J of Oceanic Engineering,2015,40(3):592-606.
[9]Hansen R E,Lyons A P,SæbøTO,etal.The effectof internalwave-related features on synthetic aperture sonar[J].IEEE J of Oceanic Engineering,2015,40(3):621-631.
[10]Toshiaki T,Yoshinori H,Hiroshi S.Low frequency synthetic aperture sonar[J].NEC Resource&Development,2003,44(2):161-164.
[11]Salman A,Siddiqui S A,Shafait F,et al.Automatic fish detection in underwater videos by a deep neural network-based hybrid motion learning system[J].ICES Journal of Marine Science,2020,77(4):1295-1307.
[12]李鹏,马味敏.融合特征点与环状域检测的水下声呐目标匹配[J].电子测量与仪器学报,2019,33(11):120-127.
[13]傅卫平,秦川,刘佳,等.基于SIFT算法的图像目标匹配与定位[J].仪器仪表学报,2011,32(1):163-169.
[14]廉蔺,李国辉,田昊,等.加窗灰度差直方图描述子及其对SURF算法的改进[J].电子与信息学报,2011,33(5):1042-1048.
[15]Dekel T,Oron S,Rubinstein M,et al.Best-Buddies Similarity for robust template matching[C].2015 IEEE Conference on Computer Vision and Pattern Recognition(CVPR),2015.
[16]张明华,龙腾,宋巍,等.一种水下鱼类动态视觉序列运动目标检测方法[J].图学学报,2021,42(1):52-58.
[17]李荣,李响,吉玲.声呐图像边缘检测方法对比研究[J].理论算法,2020,11:60-66.
[18]马硕,谭爱民.基于间隙度纹理特征的海底目标检测方法[J].兵工学报,2015,36(增刊2):149-155.
[19]陈强,田杰,刘维,等.基于纹理特征的合成孔径声呐图像目标检测研究[J].声学技术,2013,32(4):273-276.
[20]Sherin B M,Supriya M H.SOSbased selection and parameter optimization for underwater target classification[J].2016:1-4.
[21]Rova A,MoriG,Dill LM.One fish,two fish,butterfish,trumpeter:recognizing fish in underwater video[EB/OL].[2020-06-03].http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.144.501.
[22]Dalal N,Triggs B.Histograms of oriented gradients for human detection[C]//2005 IEEE Computer Society Conference on Computer Vision and Pattern Recognition(CVPR′05).New York:IEEE Press,2005:886-893.
[23]Ren S,He K,Girshick R,et al.Faster R-CNN:Towards Real-Time Object Detection with Region Proposal Networks[J].IEEE Transactions on Pattern Analysis&Machine Intelligence,2017,39(6):1137-1149.
[24]Redmon J,Divvala S,Girshick R,et al.You Only Look Once:Unified,Real-Time Object Detection[C]//IEEE Computer Vision and Pattern Recognition.Las Vegas,America,2016.
[25]Redmon J,Farhadi A.Yolov3:an InCremental Improvement[J].ArXiv Preprint:2018,1804,2767.
[26]Redmon J,Farhadi A.YOLO9000:Better,Faster,Stronger[C]//IEEE Conference on Computer Vision and Pattern Recognition.Hawaii,America,2017:7263-7727.
[27]朱世伟,杭仁龙,刘青山.基于类加权YOLO网络的水下目标检测[J].南京师大学报(自然科学版),2020,43(1),129-135.
[28]詹令明,李翠芸,姬红兵.基于显著图的红外弱小目标动态规划检测前跟踪算法[J].计算机辅助设计与图形学学报,2019,31(7):1061-1066.
[29]Itti L,Gold C,Koch C.Visual attention and target detection in cluttered natural scenes[J].Optical Engineering,2001,40(9):1784-1794.
[30]Qi SX,Ma J,Tao C,et al.A robust directional saliency-based method for infrared small-target detection under various complex backgrounds[J].IEEE Geoscience and Remote Sensing Letters,2013,10(3):495-499.
[31]刘峰,沈同圣,韩艳丽,等.融合背景感知和颜色对比的显著性检测方法[J].计算机辅助设计与图形学学报,2016,28(10):1705-1712.
[32]王智文,王宇航,蒋联源,等.基于关联帧差分法的运动目标检测与跟踪[J].现代电子技术,2021,44(2):174-178.
[33]张家铭,丁迎迎.基于深度学习的声呐图像目标识别[J].舰船科学技术,2020,42(12):133-136.
[34]马珊,张铁栋,庞永杰,等.基于改进粒子滤波的声呐图像多目标跟踪方法[J].上海交通大学学报,2013,47(12):1848-1855.
[35]EI-Hawary F.Adaptive underwater target tracking via a generalized Kalman filter[J].Autonomous Underwater Vehicle Technology.Halifax,NS:IEEE Press,1990:275-279.
[36]Tena-Ruiz I,Petillot Y,Lane D,et al.Tracking objects underwater multi beam sonar images[C].IEEE Colloquium on Motion Analysis and Tracking.England:IEEE Press,1999:11/1-11/7.
[37]Lane D M,Chantler M J,Dai D.Robust tracking of Multiple objects in sector-scan sonar image sequences using optical flow motion estimation[J].Oceanic Engineering,1998,23(1):31-46.
[38]张铁栋,万磊,王博,等.基于改进粒子滤波算法的水下目标跟踪[J].上海交通大学学报,2012,46(6):38-43.
[39]刘立昕,卞红雨.用于水下目标跟踪的多特征融合PSOPF算法[J].应用科学学报,2013,31(6):564-568.
[40]方正,佟国峰,徐心和.粒子群优化粒子滤波方法[J].控制与决策,2007,22(3):273-276.
[41]宫轶松,归庆明,孙付平,等.智能优化方法与粒子滤波技术融合的分析与展望[J].海洋测绘,2009,29(2):74-76.
[42]姚剑敏,杨春建,刘经场,等.多特征融合的非线性目标跟踪算法[J].光电工程,2008,35(3):6-7.
[43]高文,汤洋,朱明.目标跟踪中目标模型更新问题的半监督学习算法研究[J].物理学报,2015,64(1):1-9.
[44]Kalal Z,Matas J,Mikolajczyk K.Conference on Computer Vision and Pattern Recognition,CVPR[C].San Francisco,CA,US,2010.
[45]曹盼东.基于图模型的半监督SVM分类算法研究与应用[D].哈尔滨:哈尔滨工程大学,2012:15-16.