Passive Acoustic Detection of a Small Remotely Operated Vehicle

被引:0
|
作者
Cai, Meng [1 ]
Bingham, Brian [1 ]
机构
[1] Univ Hawaii Manoa, Dept Mech Engn, Field Robot Lab, Honolulu, HI 96822 USA
来源
2011 IEEE - OCEANS SPAIN | 2011年
关键词
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper presents an experimental assessment of the feasibilities of the passive acoustic detection of a small remotely operated vehicle (ROV). We report the results of a series of underwater detection trials, both in the laboratory and in the field, to quantify passive detection of a commercial off-the-shelf (COTS) small ROV. We also measure the signal-to-noise ratio (SNR) of the ROV signature as a function of distance between the ROV and acoustic receivers in a shallow water environment. Based on the experimental results, we find that the most significant contributions for ROV acoustic detection are the electric motor signals with the frequency range of around 400500 Hz. The maximum detectable distance with ambient noise at 116 dB re 1 uPa is 22 m away from the ROV in a noisy littoral environment. Finally, we present a comparison between predicted sound pressure levels of the ROV and the experimental measured results.
引用
收藏
页数:7
相关论文
共 50 条
  • [11] Underwater Absorber for a Remotely Operated Vehicle
    Xu, Pengfei
    Han, Chenbo
    Lv, Tao
    Cheng, Hongxia
    JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2022, 10 (04)
  • [12] Methodology of remotely operated vehicle design
    Graczyk, T
    MARINE TECHNOLOGY III, 2000, 1 : 573 - 577
  • [13] Development of a Remotely Operated Submarine Vehicle
    Medeiros, Antonio Marcos M.
    Junior, Jose Artur C. de O.
    Lima, Pedro H. P.
    Holdefer, Antonio E.
    Ramos de Castilho, Joao Victor
    de Oliveira, Murilo Livio
    de Lima Nerys, Jose Wilson
    2017 CHILEAN CONFERENCE ON ELECTRICAL, ELECTRONICS ENGINEERING, INFORMATION AND COMMUNICATION TECHNOLOGIES (CHILECON), 2017,
  • [14] THETIS: An underwater remotely operated vehicle
    Lygouras, JN
    Tarchanidis, KN
    Tsalides, P
    OCEANS '96 MTS/IEEE, CONFERENCE PROCEEDINGS, VOLS 1-3 / SUPPLEMENTARY PROCEEDINGS: COASTAL OCEAN - PROSPECTS FOR THE 21ST CENTURY, 1996, : 1105 - 1107
  • [15] Dynamic modelling of a remotely operated vehicle
    Ahmad, SM
    Sutton, R
    GUIDANCE AND CONTROL OF UNDERWATER VEHICLES 2003, 2003, : 43 - 48
  • [16] Mechanical Analysis of Remotely Operated Vehicle
    Guan, Zhiguang
    Zhang, Dong
    Lin, Mingxing
    Li, Jianjin
    CONFERENCE PROCEEDINGS OF 2018 4TH INTERNATIONAL CONFERENCE ON CONTROL, AUTOMATION AND ROBOTICS (ICCAR), 2018, : 446 - 450
  • [17] Remotely operated vehicle depth control
    Zanoli, SM
    Conte, G
    CONTROL ENGINEERING PRACTICE, 2003, 11 (04) : 453 - 459
  • [18] Intelligent control for a remotely operated vehicle
    Cavalletti, M.
    Ippoliti, G.
    Longhi, S.
    INTERNATIONAL JOURNAL OF SYSTEMS SCIENCE, 2009, 40 (11) : 1099 - 1114
  • [19] Fault Detection, Diagnosis and Fault Tolerant Output Control for a Remotely Operated Vehicle
    Baldini, A.
    Felicetti, R.
    Freddi, A.
    Longhi, S.
    Monteriu, A.
    Fasano, A.
    2018 14TH IEEE/ASME INTERNATIONAL CONFERENCE ON MECHATRONIC AND EMBEDDED SYSTEMS AND APPLICATIONS (MESA), 2018,
  • [20] Design of a Remotely Operated Hydraulic Transmission Vehicle
    Miller, Isaac
    Fowler, Samantha
    Pate, Keith
    Breidi, Farid
    JOURNAL OF ENGINEERING TECHNOLOGY, 2022, 39 (01) : 14 - 26