Modeling and simulation of a novel autonomous underwater vehicle with glider and flapping-foil propulsion capabilities

被引:6
|
作者
Tian Wen-long [1 ]
Song Bao-wei [1 ]
Du Xiao-xu [1 ]
Mao Zhao-yong [1 ]
Ding Hao [1 ]
机构
[1] Northwestern Polytech Univ, Sch Marine Engn, Xian 710072, Peoples R China
关键词
modeling; simulation; underwater glider; flapping foil; BUOYANCY;
D O I
10.1007/s13344-012-0046-9
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
HAISHEN is a long-ranged and highly maneuverable AUV which has two operating modes: glider mode and flapping-foil propulsion mode. As part of the vehicle development, a three-dimensional mathematical model of the conceptual vehicle was developed on the assumption that HAISHEN has a rigid body with two independently controlled oscillating hydrofoils. A flapping-foil model was developed based on the work done by Georgiades et al. (2009). Effect of controllable hydrofoils on the vehicle stable motion performance was studied theoretically. Finally, a dynamics simulation of the vehicle in both operating modes is created in this paper. The simulation demonstrates that: (1) in the glider mode, owing to the independent control of the pitch angle of each hydrofoil, HAISHEN travels faster and more efficiently and has a smaller turning radius than conventional fix-winged gliders; (2) in the flapping-foil propulsion mode, HAISHEN has a high maneuverability with a turning radius smaller than 15 m and a forward motion velocity about 1.8 m/s; (3) the vehicle is stable under all expected operating conditions.
引用
收藏
页码:603 / 622
页数:20
相关论文
共 50 条
  • [11] Operational and economic assessment of the flapping-foil thruster propulsion innovation performance
    Ventikos, N. P.
    Sotiralis, P.
    Stamatopoulou, E. V.
    Annetis, E.
    Filippas, E.
    Belibassakis, K. A.
    TRENDS IN MARITIME TECHNOLOGY AND ENGINEERING, MARTECH 2022, VOL 1, 2022, 8 : 563 - 570
  • [12] Design of a flapping foil underwater vehicle
    Licht, S
    Hover, F
    Triantafyllou, MS
    PROCEEDINGS OF THE 2004 INTERNATIONAL SYMPOSIUM ON UNDERWATER TECHNOLOGY, 2004, : 311 - 316
  • [13] A method for the analysis and design of flapping-foil thrusters for augmenting ship propulsion in waves
    Belibassakis, K. A.
    Filippas, E. S.
    MARITIME TECHNOLOGY AND ENGINEERING, VOLS. 1 & 2, 2015, : 841 - 850
  • [14] NOISE GENERATION AND PROPAGATION FROM FLAPPING-FOIL THRUSTERS USED FOR MARINE PROPULSION
    Malefaki, Iro
    Karperaki, Angeliki
    Belibassakis, Kostas
    PROCEEDINGS OF ASME 2022 41ST INTERNATIONAL CONFERENCE ON OCEAN, OFFSHORE & ARCTIC ENGINEERING, OMAE2022, VOL 5B, 2022,
  • [15] Development of an auxiliary propulsion module for an autonomous underwater glider
    Claus, B.
    Bachmayer, R.
    Williams, C. D.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART M-JOURNAL OF ENGINEERING FOR THE MARITIME ENVIRONMENT, 2010, 224 (M4) : 255 - 266
  • [16] Folaga: A low-cost autonomous underwater vehicle combining glider and AUV capabilities
    Alvarez, A.
    Caffaz, A.
    Caiti, A.
    Casalino, G.
    Gualdesi, L.
    Turetta, A.
    Viviani, R.
    OCEAN ENGINEERING, 2009, 36 (01) : 24 - 38
  • [17] Concept of an autonomous underwater glider with passively adapting flapping wings
    Thyrann, Jonas
    Pabst, Jonas
    Kosleck, Sascha
    OCEANS 2023 - LIMERICK, 2023,
  • [18] Quantification of the Benefits of a Compliant Foil for Underwater Flapping Wing Propulsion
    Lock, Richard J.
    Peiris, B. H. Pasindu M.
    Bates, Simon
    Burgess, Stuart C.
    Vaidyanathan, Ravi
    2011 IEEE/ASME INTERNATIONAL CONFERENCE ON ADVANCED INTELLIGENT MECHATRONICS (AIM), 2011, : 898 - 903
  • [19] An autonomous underwater vehicle as an underwater glider and its depth control
    Joo, Moon G.
    Qu, Zhihua
    INTERNATIONAL JOURNAL OF CONTROL AUTOMATION AND SYSTEMS, 2015, 13 (05) : 1212 - 1220
  • [20] An autonomous underwater vehicle as an underwater glider and its depth control
    Moon G. Joo
    Zhihua Qu
    International Journal of Control, Automation and Systems, 2015, 13 : 1212 - 1220