参考文献

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参考文献

[1]李启虎.海洋监测技术主要成果及发展趋势[J].科学中国人,2001(4):30-31.

[2]羊秋玲.面向海洋监测与用户服务的海洋网络关键技术研究[D].天津:天津大学,2017.

[3]洪伟东.深圳市海洋生态经济发展空间布局研究[D].长春:吉林大学,2017.

[4]左加佳.海洋强省发展水平综合评价与监测预警研究[D].杭州:浙江工商大学,2018.

[5]倪国江.基于海洋可持续发展的中国海洋科技创新战略研究[D].青岛:中国海洋大学,2010.

[6]孙云潭.中国海洋灾害应急管理研究[D].青岛:中国海洋大学,2010.

[7]卜志国.海洋生态环境监测系统数据集成与应用研究[D].青岛:中国海洋大学,2010.

[8]曹敏杰,刘增宏,吴晓芬等.中国Argo海洋观测十五年[J].地球科学进展,2016,31(05):445-460.

[9]路晓庆.我国卫星海洋遥感监测[J].海洋预报,2008(04):85-89.

[10]林明森,张有广.我国海洋动力环境卫星应用现状及发展展望[J].卫星应用,2018(05):19-23.

[11]董超,刘蔚,李雪,等.无人水面艇海洋调查国内应用进展与展望[J].导航与控制,2019,18(01):1-9,43.

[12]马天宇,杨松林,王涛涛,等.多USV协同系统研究现状与发展概述[J].舰船科学技术,2014,36(06):7-13.

[13]马伟锋,胡震.AUV的研究现状与发展趋势[J].火力与指挥控制,2008(06):10-13.

[14]何希盈,毛柳伟,陈庆元,等.自主潜航器海洋环境监测发展及运用[J].科技导报,2018,36(24):48-52.

[15]葛庆.海洋监测系统中卫星通信控制平台关键技术研究[J].舰船科学技术,2016,38(08):106-108.

[16]吕良良.小型海洋环境监测平台设计与实现[D].哈尔滨:哈尔滨工程大学,2019.

[17]LIU Z,ZHANG Y,YU X,et al.Unmanned surface vehicles:An overview of developments and challenges[J].Annual Reviews in Control,2016,41:7193.

[18]BIBULI M,BRUZZONE G,CACCIA M,et al.Path-following algorithms andexperiments for an unmanned surface vehicle[J].Journal of Field Robotics,2009,26(8):669-688.

[19]MOTWANI A,SHARMA S,SUTTON R,et al.Interval Kalman Filtering in Navigation System Design for an Uninhabited Surface Vehicle[J].Journal of Navigation,2013,66(5):639-652.

[20]NAEEM W,SUTTON R,XU T.An integrated multi-sensor data fusion algorithm and autopilot implementation in an uninhabited surface craft[J].Ocean Engineering,2012,39:43-52.

[21]VASCONCELOS J F,SILVESTRE C,OLIVEIRA P.INS/GPS Aided by frequency contents of vector observations with application to autonomous surface crafts[J].IEEE Journal of Oceanic Engineering,2011,36(2):347-363.

[22]VASCONCELOS J F,CARDEIRA B,SILVESTRE C,et al.Discrete-Time Complementary Filters for Attitude and Position Estimation:Design,Analysis and Experimental Validation[J].IEEE Transactions on Control Systems Technology,2011,19(1):181-198.

[23]LEEDEKERKEN J C,FALLON M F,LEONARD J J.Mapping Complex Marine Environments with Autonomous Surface Craft[G]//KHATIB O,KUMAR V,SUKHATME G.Experimental Robotics.Berlin,Heidelberg:Springer Berlin Heidelberg,2014,79:525-539.

[24]Naeem W,Sutton R,Chudley J.Modelling and control of an unmanned surface vehicle for environmental monitoring[C]//UKACC International Control Conference.2006.

[25]YAKIMENKO O A,KRAGELUND S P.Real-time optimal guidance and obstacle avoidance for umvs[J].Autonomous Underwater Vehicles,2011:67-98.

[26]GAL O.Automatic Obstacle Detection for USV's Navigation Using Vision Sensors[C]//SCHLAEFER A,BLAUROCK O.Robotic Sailing.Springer Berlin Heidelberg,2011.

[27]MA Z,WEN J,LIANG X.Video Image Clarity Algorithm Research of USV Visual System under the Sea Fog[C]//TAN Y,SHI Y,MO H.Advances in Swarm Intelligence.Springer Berlin Heidelberg,2013.

[28]GAL O,ZEITOUNI E.Tracking Objects Using PHD Filter for USV Autonomous Capabilities[G]//SAUZÉC,FINNIS J.Robotic Sailing 2012.Berlin,Heidelberg:Springer Berlin Heidelberg,2013:3-12.

[29]JI X,ZHUANG J Y,SU Y M.Marine Radar Target Detection for USV[J].Advanced Materials Research,2014,1006-1007:863-869.(https://www.daowen.com)

[30]HEIDARSSON H K,SUKHATME G S.Obstacle detection and avoidance foran Autonomous Surface Vehicle using a profiling sonar[C]//2011 IEEE International Conference on Robotics and Automation.Shanghai,China:IEEE,2011.

[31]CARMINATI M,LUZZATTO-FEGIZ P.Conduino:Affordable and highresolution multichannel water conductivity sensor using micro USB connectors[J].Sensors and Actuators B:Chemical,2017,251:1034-1041.

[32]LV Z,ZHANG J,JIN J,et al.Link strength for Unmanned Surface Vehicle's underwater acoustic communication[C]//2016 IEEE/OES China Ocean Acoustics(COA).Harbin,China:IEEE,2016.

[33]LV Z,ZHANG J,JIN J,et al.Underwater Acoustic Communication Quality Evaluation Model Based on USV[J].Shock and Vibration,2018:1-7.

[34]YANG T,GUO Y,ZHOU Y,et al.Joint Communication and Control for Small Underactuated USV Based on Mobile Computing Technology[J].IEEE Access,2019.

[35]Jain S K,Mohammad S,Bora S,et al.A review paper on:autonomous underwater vehicle[J].International Journal of Scientific & Engineering Research,2015,6(2):38.

[36]Bogue R.Underwater robots:a review of technologies and applications[J].Industrial Robot:An International Journal,2015,42(3):186-191.

[37]Ludvigsen M,Sørensen A J.Towards integrated autonomous underwater operations for ocean mapping and monitoring[J].Annual Reviews in Control,2016,42:145-157.

[38]Urabe T,Ishibashi J I,Sunamura M,et al.Subseafloor biosphere linked to hydrothermal systems:TAIGA concept[M].Springer,2015.

[39]Xue Y,Li Y,Guang J,et al.Small satellite remote sensing and applications—history,current and future[J].International Journal of Remote Sensing,2008,29(15):4339-4372.

[40]Jiang X,Lin M,Liu J,et al.The HY-2 satellite and its preliminary assessment[J].International Journal of Digital Earth,2012,5(3):266-281.

[41]Hauser D,Tison C,Amiot T,et al.CFOSAT:A new Chinese-French satellite for joint observations of ocean wind vector and directional spectra of ocean waves[C]//Remote Sensing Of The Oceans And Inland Waters:Techniques,Applications,And Challenges.International Society for Optics and Photonics,2016,9878:98780T.

[42]Zhu D,Dong X,Yun R,et al.Recent advances in developing the CFOSAT scatterometer[C]//2016 IEEE International Geoscience and Remote Sensing Symposium(IGARSS).IEEE,2016.

[43]Yang J,Zhang J,Wang G,et al.Analysis of Arctic seas surface wind field and ocean wave remote sensing observation capability[J].Haiyang Xuebao,2018,40(11):105-115.

[44]Harr J,Jones T,Andersen B N,et al.Microsatellites for Maritime Surveillance—An update on the Norwegian Smallsat Program[C]//Proceedings of the 69th International Astronautical Congress(IAC),Bremen,Germany.2018.

[45]Qian Y,Zhou W,Wang C.Research on Multi-Source Data Fusion in the Field of Atmospheric Environmental Monitoring[C]//2018 13th International Conference on Computer Science&Education(ICCSE).IEEE,2018.

[46]Bloisi D D,Previtali F,Pennisi A,et al.Enhancing automatic maritime surveillance systems with visual information[J].IEEE Transactions on Intelligent Transportation Systems,2016,18(4):824-833.

[47]Bustamante A L,López J M M,Herrero J G.Player:an open source tool to simulate complex maritime environments to evaluate data fusion performance[J].Simulation Modelling Practice and Theory,2017,76:3-21.

[48]孙苗,符昱,吕憧憬,等.深度学习在海洋大数据挖掘中的应用[J].科技导报,2018,36(17):83-90.

[49]刘宇.中国网络文化发展二十年(1994—2014)网络技术编[M].长沙:湖南大学出版社,2014.

[50]杨良斌.信息分析方法与实践[M].长春:东北师范大学出版社,2017.

[51]哈林顿.机器学习实战[M].北京:北京人民邮电出版社,2013.

[52]张曾莲.基于非营利性、数据挖掘和科学管理的高校财务分析、评价与管理研究[M].北京:首都经济贸易大学出版社,2014.

[53]Faria M,Pinto J,Py F,et al.Coordinating UAVs and AUVs for oceanographic field experiments:Challenges and lessons learned[C]//2014 IEEE International Conference on Robotics and Automation(ICRA).IEEE,2014.

[54]Zolich A,Palma D,Kansanen K,et al.Survey on communication and networks for autonomous marine systems[J].Journal of Intelligent&Robotic Systems,2019,95(3-4):789-813.

[55]Birkeland R,Palma D,Zolich A.Integrated smallsats and unmanned vehicles for networking in remote locations[C]//Proceedings of the 68th international astronautical congress.2017.

[56]钮卿,程琳.基于环境保护大数据的监测与智能诊断研究[J].环境科学与管理.2018,242(01):167-170.

[57]孟春霞,李桂娟,车树伟,等.SOM算法在海洋大数据挖掘中的应用初探[C]//2016年全国声学学术会议,2016.

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