
| Citation: | LIU Tengjiao, WANG Dan, LIU Jinguo. Review of Non-Acoustic Detection Technologies of Submarines[J]. Journal of Unmanned Undersea Systems, 2023, 31(4): 521-526. doi: 10.11993/j.issn.2096-3920.2023-0054 |
| [1] |
梅风华, 侯旺. 非声探潜技术在航空尾迹探测上的应用[J]. 电光与控制, 2017, 24(7): 62-65.
Mei Fenghua, Hou Wang. Application of non-acoustic submarine exploration technology in aviation wake detection[J]. Electro-Optics & Control, 2017, 24(7): 62-65.
|
| [2] |
宫继祥. 浅海非声探潜[J]. 现代舰船, 1996(11): 29-31.
Gong Jixiang. Non-acoustic diving in shallow sea[J]. Modern Ships, 1996(11): 29-31.
|
| [3] |
成建波, 孙心毅. 航空磁异常探潜技术发展综述[J]. 声学与电子工程, 2018(3): 46-49.
Cheng Jianbo, Sun Xinyi. Review on the development of avionically anomalous submarine exploration technology[J]. Acoustics & Electronic Engineering, 2018(3): 46-49.
|
| [4] |
艾艳辉, 赵志平. 非声探测技术面面观[J]. 水雷战与舰船防护, 2003(3): 43-46.
|
| [5] |
崔国恒, 于德新. 非声探潜技术现状及其对抗措施[J]. 火力与指挥控制, 2007, 32(12): 10-13.
Cui Guoheng, Yu Dexin. Current situation of non-acoustic submarine exploration technology and countermeasures[J]. Fire Power & Command and Control, 2007, 32(12): 10-13.
|
| [6] |
王翠珍, 唐金元. 现代航空搜潜技术[M]. 北京: 海潮出版社, 2003: 51-52.
|
| [7] |
翁行泰, 曹梅芬, 吴文福, 等. 磁异探潜中潜艇的数学模型[J]. 上海交通大学学报, 1995(3): 27-32.
Weng Xingtai, Cao Meifen, Wu Wenfu, et al. Mathematical model of submarine in magnetic exploration[J]. Journal of Shanghai Jiao Tong University, 1995(3): 27-32.
|
| [8] |
孙明太. 航空反潜战术[M]. 北京: 军事科学出版社, 2003: 99-106.
|
| [9] |
陈正想, 卢俊杰. 弱磁探测技术发展现状[J]. 水雷战与舰船防护, 2011, 19(4): 1-5.
|
| [10] |
Fletche R B. Antonelli L T. Experimental detection and reception performance for uplink underwater acoustic communication using a remote in-air acousto-optic sensor[J]. Journal of Oceanic Engineering, 2006, 31(1): 179-187. doi: 10.1109/JOE.2005.861248
|
| [11] |
李哲, 邓甲昊, 周卫平. 水下激光探测技术及其进展[J]. 船舶电子工程, 2008, 48(12): 8-11.
Li Zhe, Deng Jiahao, Zhou Weiping. Underwater laser detection technology and its progress[J]. Ship Electronic Engineering, 2008, 48(12): 8-11.
|
| [12] |
方尔正, 桂晨阳, 王欢. 潜艇的非声学探测技术[J]. 国防科技工业, 2020(6): 66-68.
Fang Erzheng, Gui Chenyang, Wang Huan. Non-acoustic detection technology of submarine[J]. Science, Technology and Industry for National Defense, 2020(6): 66-68.
|
| [13] |
Stefasnick T. The nonacoustic detection of submarines[J]. Scientific American, 1998, 258(3): 41-47.
|
| [14] |
张军, 张效慈, 赵峰, 等. 源于水动力学的潜艇尾迹非声探测技术研究之进展[J]. 船舶力学, 2003, 7(2): 121-128. doi: 10.3969/j.issn.1007-7294.2003.02.016
Zhang Jun, Zhang Xiaoci, Zhao Feng, et al. Research progress on non-acoustic detection technology of submarine wake derived from hydrodynamics[J]. Ship Mechanics, 2003, 7(2): 121-128. doi: 10.3969/j.issn.1007-7294.2003.02.016
|
| [15] |
Zhang Z J, Stern F. Free-surface wave-induced separation[J]. Journal of Fluids Engineering, 1996, 118(3): 546-554. doi: 10.1115/1.2817793
|
| [16] |
彭亮, 王建勋, 邓海华, 等. 水下非声探测与隐身技术综述[J]. 舰船科学技术, 2014, 36(5): 6-10. doi: 10.3404/j.issn.1672-7649.2014.05.002
Peng Liang, Wang Jianxun, Deng Haihua, et al. Review of underwater non-acoustic detection and stealth technology[J]. Ship Science and Technology, 2014, 36(5): 6-10. doi: 10.3404/j.issn.1672-7649.2014.05.002
|
| [17] |
梁志城. 现代反潜武备[M]. 北京: 海潮出版社, 2003.
|
| [18] |
Madurasinghe D, Tuck E O. The induced electromagnetic fields associated with submerged moving bodies in an unstratified conducting fluid[J]. IEEE Journal of Oceanic Engineering, 2014, 19(6): 193-199.
|
| [19] |
Madurasinghe D. Induced electromagnetic fields associated with large ship wakes[J]. Wave Motion, 2014, 20(2): 283-292.
|
| [20] |
林春生, 龚沈光. 舰船物理场[M]. 2版. 北京: 兵器工业出版社, 2007.
|
| [21] |
龚沈光, 卢新成. 舰船电场特性初步分析[J]. 海军工程大学学报, 2008, 36(6): 54-57.
Gong Shenguang, Lu Xincheng. Preliminary analysis of electric field characteristics of ships[J]. Journal of Naval University of Engineering, 2008, 36(6): 54-57.
|
| [22] |
Roxburgh I S. Thermal infrared detection of submarines springs associated with the Plymouth Limestone[J]. Hydrological sciences journal, 1985, 30(2): 185-196. doi: 10.1080/02626668509490983
|
| [23] |
Wren G G, May D. Detection of submerged vessels using remote sensing techniques[J]. Australian Defense Force, 1997, 127: 8-15.
|
| [24] |
孙岚, 李厚朴, 边少峰, 等. 基于重力梯度的潜艇探测方法研究[J]. 海洋测绘, 2010, 30(2): 24-27.
Sun Lan, Li Houpu, Bian Shaofeng, et al. Research on submarine detection method based on gravity gradient[J]. Hydrographic Surveying and Charting, 2010, 30(2): 24-27.
|
| [25] |
张志强, 郑晗, 崔银峰. 航空重力垂直梯度探测潜艇方法研究[J]. 海洋测绘, 2019, 39(4): 6-9. doi: 10.3969/j.issn.1671-3044.2019.04.002
Zhang Zhiqiang, Zheng Han, Cui Yinfeng. Research on submarine detection method of aviation gravity vertical gradient[J]. Hydrographic Surveying and Charting, 2019, 39(4): 6-9. doi: 10.3969/j.issn.1671-3044.2019.04.002
|
| [26] |
吴琼, 滕云田, 张兵, 等. 世界重力梯度仪的研究现状[J]. 物探与化探, 2013, 37(5): 761-767.
Wu Qiong, Teng Yuntian, Zhang Bing, et al. Research status of gravity gradiometer in the world[J]. Geophysical and Geochemical Exploration, 2013, 37(5): 761-767.
|
| [27] |
Oger G, Debye P. A method for the determination of the mass of electrolytic ions[J]. Journal of Chemical Physics, 1993, 1(1): 13-16.
|
| [28] |
Lei C, Sun X C, Zhou Y. Noise analysis and improvement of a micro-electro-mechanical-systems fluxgate sensor[J]. Measurement, 2018, 122: 1-5. doi: 10.1016/j.measurement.2018.03.007
|