• 中国科技核心期刊
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Volume 33 Issue 1
Mar  2025
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Article Contents
ZHANG Xuelun, PENG Junyu, GUO Kun, ZHANG Huaying. Application of Anti-Submarine Warfare Strategy Ship-Aircraft Coordination[J]. Journal of Unmanned Undersea Systems, 2025, 33(1): 183-191. doi: 10.11993/j.issn.2096-3920.2024-0141
Citation: ZHANG Xuelun, PENG Junyu, GUO Kun, ZHANG Huaying. Application of Anti-Submarine Warfare Strategy Ship-Aircraft Coordination[J]. Journal of Unmanned Undersea Systems, 2025, 33(1): 183-191. doi: 10.11993/j.issn.2096-3920.2024-0141

Application of Anti-Submarine Warfare Strategy Ship-Aircraft Coordination

doi: 10.11993/j.issn.2096-3920.2024-0141
  • Received Date: 2024-09-26
  • Accepted Date: 2024-11-08
  • Rev Recd Date: 2024-11-02
  • Available Online: 2025-01-17
  • Given the complex security situation in China’s surrounding waters and the large number of submarines, developing coordinated anti-submarine warfare(ASW) systems and effective ASW strategies is a critical priority. This paper took ASW as the research background and explored ASW strategies based on ship-aircraft coordination. Coordinated ASW systems and weapons and equipment of various countries were first reviewed. Then, the applications of the ASW strategy based on ship-aircraft coordination were analyzed, and simulations were conducted to evaluate their effectiveness. Additionally, with the rapid advancement of unmanned systems, how manned-unmanned coordination enhances ASW capabilities was assessed, providing references for the development and improvement of ASW strategies based on the ship-aircraft coordination.

     

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  • [1]
    刘腾蛟, 王丹, 刘金国. 潜艇非声探测技术综述[J]. 水下无人系统学报, 2023, 31(4): 521-526.

    LIU T J, WANG D, LIU J G. Review of non-acoustic detection technologies of submarines[J]. Journal of Unmanned Undersea Systems, 2023, 31(4): 521-526.
    [2]
    FORREST R N. Some notes on search, detection and localization modeling[R]. Monterey CA: Naval Postgraduate School, 1983.
    [3]
    KOURITZIN M A, BALLANTYNE D J, KIM H, et al. On sonobuoy placement for submarine tracking[C]//Signal Processing, Sensor Fusion, and Target Recognition XIV. Orlando, USA: SPIE, 2005: 244-252.
    [4]
    白晶, 韩亮. 舰载直升机吊声的搜潜方法探讨[J]. 北京航空航天大学学报, 2007, 33(3): 282-285.

    BAI J, HAN L. Search method of dipping sonar on ship borne antisubmarine aircraft[J]. Journal of Beijing University of Aeronautics and Astronautics, 2007, 33(3): 282-285.
    [5]
    王义涛, 门金柱, 周明, 等. 模糊AHP的舰机协同对潜搜索方式优选[J]. 火力与指挥控制, 2010, 35(4): 167-170.

    WANG Y T, MENG J Z, ZHOU M, et al. Optimized choice method of cooperative searching way between warships and airplanes based on fuzzy AHP[J]. Fire Control & Command Control, 2010, 35(4): 167-170.
    [6]
    王慎, 石章松, 苏楠, 等. 舰机协同搜潜直升机编队配置优化研究[J]. 舰船科学技术, 2011, 33(2): 102-104.

    WANG S, SHI Z S, SU N, et al. Research and optimization on configuration of helicoper formation for cooperatively-searching-submarine of naval vessels and aircrafts[J]. Ship Science and Technology, 2011, 33(2): 102-104.
    [7]
    曹黎明, 初磊, 赵鑫炎. 基于多声纳融合的舰机协同搜潜研究[J]. 舰船电子工程, 2013, 33(6): 138-140.

    CAO L M, CHU L, ZHAO X Y. Submarine searching method of ship-helicopter coordination based on multi-sonar data fusion[J]. Ship Electronic Engineering, 2013, 33(6): 138-140.
    [8]
    郭志荣, 陆文俊, 金晓宇. 鱼雷爆炸作用下潜艇鞭状运动响应仿真分析[J]. 水下无人系统学报, 2021, 29(5): 609-615.

    GUO Z R, LU W J, JIN X Y. Simulation analysis of the whipping response of a submarine subjected to the torpedo explosion[J]. Journal of Unmanned Undersea Systems, 2021, 29(5): 609-615.
    [9]
    张财生, 司沈闯. 基于贝叶斯网络的舰机协同动态结果预测研究[J]. 舰船电子工程, 2023, 43(5): 75-81.

    ZHANG C S, SI S C. Research on dynamic cooperation results prediction between aircraft carrier and AEW based on Bayesian network[J]. Ship Electronic Engineering, 2023, 43(5): 75-81.
    [10]
    施丹华, 胡必楠, 黄俊希. 水声对抗器材发展及其趋势分析[J]. 舰船科学技术, 2020, 42(5): 174-180.

    SHI D H, HU B N, HUANG J X. State-of-the-art of foreign underwater acoustic countermeasures and their development trends[J]. Ship Science and Technology, 2020, 42(5): 174-180.
    [11]
    张丙飞, 孙心毅, 成建波. 单机吊放声呐应召反潜探测概率的计算与优化[J]. 航空电子技术, 2020, 51(1): 35-38.

    ZHANG B F, SUN X Y, CHENG J B. Probability in antisubmarine call search with sonar compute and optimize[J]. Avionics Technology, 2020, 51(1): 35-38.
    [12]
    吕日毅. 21世纪反潜巡逻机发展趋势[J]. 中国电子科学研究院学报, 2022, 17 (11): 1113-1118.

    LÜ R Y. Development trend of anti-submarine maritime patrol aircraft platform in the 21st century[J]. Journal of China Academy of Electronics and Information Technology, 2022, 17 (11): 1113-1118.
    [13]
    夏志军, 杜选民, 章新华, 等. 基于方位信息的编队多诱饵协同水声对抗方法[J]. 火力与指挥控制, 2020, 45(9): 186-190.

    XIA Z J, DU X M, ZHANG X H, et al. Cooperative underwater acoustic countermeasure method of ship formation using multi-decoy based on bearing information[J]. Fire Control & Command Control, 2020, 45(9): 186-190.
    [14]
    侯代文, 张虹, 邓磊明. 基于HHT的助飞反潜鱼雷入水信号检测方法[J]. 火力与指挥控制, 2020, 45(9): 160-165.

    HOU D W, ZHANG H, DENG L M. HHT-based water entry signal detection method for rocket-assisted anti-submarine torpedo[J]. Fire Control & Command Control, 2020, 45(9): 160-165.
    [15]
    石秀华, 王晓娟. 水中兵器概论(鱼雷分册)[M]. 西安: 西北工业大学出版社, 2010.
    [16]
    何心怡, 卢军, 张思宇, 等. 国外鱼雷现状与启示[J]. 数字海洋与水下攻防, 2020, 3(2): 87-93.

    HE X Y, LU J, ZHANG S Y, et al. Research status and enlightenment of foreign torpedoes[J]. Digital Ocean&Underwater Warfare, 2020, 3(2): 87-93.
    [17]
    唐波, 孟荻, 范文涛. 国外水声对抗器材发展现状与启示—潜用器材[J]. 水下无人系统学报, 2022, 30(1): 15-22.

    TANG B, MENG D, FAN W T. Current situation and enlightenment of foreign underwater acoustic countermeasure equipment for submarine[J]. Journal of Unmanned Undersea Systems, 2022, 30(1): 15-22.
    [18]
    鞠建波, 郁红波, 刘敏, 等. 舰机协同下对机动规避潜艇搜潜技术研究[J]. 航空兵器, 2021, 28(4): 63-68.

    JU J B, YU H B, LIU M, et al. Research on submarine search technology of maneuver avoidance with ship and aircraft coordination[J]. Aero Weaponry, 2021, 28(4): 63-68.
    [19]
    刘胜蓝, 董受全. 舰机协同防空反导战术运用研究[J]. 舰船电子工程, 2022, 42(6): 23-25.

    LIU S L, DONG S Q. Research on the application of ship aircraft cooperative air defense and anti-missile tactics[J]. Ship Electronic Engineering, 2022, 42(6): 23-25.
    [20]
    王书晓, 李伟, 郑亚波, 等. 舰机协同海上搜寻关键问题研究[J]. 指挥控制与仿真, 2016(1): 34-37.

    WANG S X, LI W, ZHENG Y B, et al. Several key problems of maritime search of warship-helicopter cooperation[J]. Command Control & Simulation, 2016(1): 34-37.
    [21]
    常会振, 秦大国, 孙盛智, 等. 基于ADC模型优化的海上无人机作战效能评估[J]. 兵器装备工程学报, 2023, 44(9): 58-68.

    CHANG H Z, QIN D G, SUN S Z, et al. Operational effectiveness evaluation of marine unmanned aerial vehicle based on ADC model optimization[J]. Journal of Ordnance Equipment Engineering, 2023, 44(9): 58-68.
    [22]
    刘艳平, 张旭. 舰机作战编组协同对海攻击作战效能评估研究[J]. 舰船电子工程, 2021, 41(4): 139-142.

    LIU Y P, ZHANG X. Research on combat effectiveness evaluation of ship-aircraft combat team coordination in sea attack[J]. Ship Electronic Engineering, 2021, 41(4): 139-142.
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