• 中国科技核心期刊
  • JST收录期刊
ZHONG Hong-wei. Review and Prospect of Equipment and Techniques for Unmanned Undersea Vehicle in Foreign Countries[J]. Journal of Unmanned Undersea Systems, 2017, 25(新刊3): 215-225. doi: 10.11993/j.issn.2096-3920.2017.03.001
Citation: ZHONG Hong-wei. Review and Prospect of Equipment and Techniques for Unmanned Undersea Vehicle in Foreign Countries[J]. Journal of Unmanned Undersea Systems, 2017, 25(新刊3): 215-225. doi: 10.11993/j.issn.2096-3920.2017.03.001

Review and Prospect of Equipment and Techniques for Unmanned Undersea Vehicle in Foreign Countries

doi: 10.11993/j.issn.2096-3920.2017.03.001
  • Received Date: 2017-02-22
  • Rev Recd Date: 2017-07-19
  • Publish Date: 2017-08-20
  • An unmanned undersea vehicle(UUV) has become the research hotspot of navy in many countries. This paper analyzes the development process and planning of some typical types of UUV equipment in the foreign countries, including the USA, Russia, Japan, Republic of Korea, and major European countries. According to a large amount of literature, the major research institutes for UUV development in these countries are listed, the applications and key technical parameters of the typical UUV equipment are introduced, the foreign development status of the UUV technologies of energy, autonomous control, navigation, communication, and loading is discussed, and development trend of the UUV is forecast

     

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  • [1]
    陈强, 张林根. 美国军用UUV现状及发展趋势分析[J]. 舰船科学技术, 2010, 32(7): 129-134.

    Chen Qiang, Zhang Lin-gen. Analysis of Current Situational Development Trend of US Military UUV[J]. Ship Science and Technology, 2010, 32(7): 129-134.
    [2]
    许德章. 水下作业多传感器集成与信息融合研究[D]. 合肥: 中国科学技术大学, 2005.
    [3]
    国外舰船装备与技术发展报告编写组. 国外舰船装备与技术发展报告2016: 海上无人系统(无人潜航器)[G]. 北京: 中国船舶重工集团公司, 2017.
    [4]
    国外舰船装备与技术发展报告编写组. 国外舰船武器装备与技术发展报告2015: 海上无人系统(无人潜航器)[G]. 北京: 中国船舶重工集团公司, 2016.
    [5]
    国外舰船装备与技术发展报告编写组. 国外舰船武器装备与技术发展报告2014: 海上无人系统(无人潜航器)[G]. 北京: 中国船舶重工集团公司, 2015.
    [6]
    国防科技信息网. 国外自主式水下航行体(AUV)研发现状比较[EB/OL]. (2009-12-18)[2017-03-01]. http:// www. dsti.net/Special/NewsView/136.
    [7]
    Large Displacement Unmanned Underwater Vehicle SteamingAhead[EB/OL].(2012-04-01)[2015-09-21].http://aviationweek.com/awindefense///lduuv/.
    [8]
    German Navy to receive REMUS 100 AUVs from Hydroid [EB/OL].(2012-10-04)[2017-07-11].http://www.naval-technology.com/projects/remus-100-automatic-underwater-vehicles/.
    [9]
    General Dynamics Knifefish Unmanned Undersea Vehicle Successfully Completes Mine-hunting Evaluation[EB/OL]. (2017-03-20)[2017-07-11].https://gdmissionsystems.com/Articles/2017/03/20/news-release-3-20-2017-gd-knifefish-umann- ed-undersea-vehicle-successfully-completes-mine-hunting-ev.
    [10]
    Autonomous-underwater-vehicle[EB/OL].(2009-07-20)[2017- 07-11]. http://en.m.wikipedia.org/wiki/Autonomous-under-water-vehicle.
    [11]
    钟宏伟. 武器级UUV发展趋势及关键技术研究[R]. 北京: 中国国防科学技术报告管理办公室, 2011(12).
    [12]
    国外舰船装备与技术发展报告编写组. 国外舰船武器装 备与技术发展报告2013: 海上无人系统(无人潜航器)[R]. 北京: 中国船舶重工集团公司, 2014.
    [13]
    Japan Creating Fuel-cell Powered Underwater Vehicle [EB/OL]. (2014-08-10)[2017-07-11]. http://fuelcellworks. com/archives/2016/08/11/japan-creating-fuel-cell-powered-underwater-vehicle/.
    [14]
    Japan Is Building a "UUV" Will Fuel Cell-Powered Robotic Submarines Soon Swim American Seas[EB/OL]. (2014-09-14)[2017-03-01]. https://www.fool.com/ invest-ng/general/2014/09/14/weekender-a-fuel-cell-powered-robotic-submarine-br.aspx.
    [15]
    Barry J, Abigail R, Kevin D. The Direct Borohydride Guel Cell for UUV Propulsion Power[J]. Jaurnal of Power Sources, 2006, 162(2): 765-772.
    [16]
    AUV Communication and Performance[EB/OL]. (2014- 08-14)[2017-06-01].http://www.naval-technology.com/projects/remus-100-automatic-underwater-vehicle/.
    [17]
    Department of the Navy. The Navy Unmanned Undersea Vehicle(UUV) Master Plan[R]. U.S.: Department of the Navy, 2004.
    [18]
    United States Department of Defense. Unmanned Systems Roadmap: FY2007-2032[R]. U.S.: United States Department of Defense, 2007.
    [19]
    United States Department of Defense. Unmanned Systems Integrated Roadmap: FY2009-2034[R]. U.S.: United States Department of Defense, 2009.
    [20]
    United States Department of Defense. Unmanned Systems Integrated Roadmap: FY2011-2036[R]. U.S.: United States Department of Defense, 2011.
    [21]
    United States Department of Defense. Unmanned Systems Integrated Roadmap: FY2013-2038[R]. U.S.: United States Department of Defense, 2013.
    [22]
    欧洲制定海上无人系统的路线图和方法论[EB/OL]. (2012-01-18)[2017-06-01].http://news.xinhuanet.com/mil/ 2012-01/18/c_122600858.htm
    [23]
    世界舰船武器装备与技术发展报告编写组. 世界舰船武器装备与技术发展报告2011: 海上无人系统(无人潜航器)[G]. 北京: 中国船舶重工集团公司, 2012.
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