• Chinese Journal of Ship Research
  • Vol. 19, Issue 1, 272 (2024)
Jiejie KONG1,2, Jianyao WANG1,2, and Hongdong WANG1,2
Author Affiliations
  • 1State Key Laboratory of Ocean Engineering, Shanghai Jiao Tong University, Shanghai 200240, China
  • 2Key Laboratory of Marine Intelligent Equipment and System of Ministry of Education, Shanghai Jiao Tong University, Shanghai 200240, China
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    DOI: 10.19693/j.issn.1673-3185.02990 Cite this Article
    Jiejie KONG, Jianyao WANG, Hongdong WANG. A new multi-rotor UAV landing device and safety boundary assessment method[J]. Chinese Journal of Ship Research, 2024, 19(1): 272 Copy Citation Text show less
    References

    [1] SHIM H M, YOU D, SHIM D H. An autonomous shipboard ling algithm f unmanned helicopters[C]2013 International Conference on Unmanned Aircraft Systems. Atlanta, GA, USA: IEEE, 2013: 769−778.

    [4] J GHOMMAM, M SAAD. Autonomous landing of a quadrotor on a moving platform. IEEE Transactions on Aerospace and Electronic Systems, 53, 1504-1519(2017).

    [5] J N LI, H B DUAN. Simplified brain storm optimization approach to control parameter optimization in F/A-18 automatic carrier landing system. Aerospace Science and Technology, 42, 187-195(2015).

    [6] Y T HUANG, M ZHU, Z W ZHENG et al. Fixed-time autonomous shipboard landing control of a helicopter with external disturbances. Aerospace Science and Technology, 84, 18-30(2019).

    [7] HOLMES W K, LANGELAAN J W. Autonomous shipboard ling using monocular vision[C]AHS 72th Annual Fum. West Palm Beach, Flida: American Helicopter Society, 2016:1–15.

    [8] G ANITHA, R N G KUMAR. Vision based autonomous landing of an unmanned aerial vehicle. Procedia Engineering, 38, 2250-2256(2002).

    [9] O A YAKIMENKO, I I KAMINER, W J LENTZ et al. Unmanned aircraft navigation for shipboard landing using infrared vision. IEEE Transactions on Aerospace and Electronic Systems, 38, 1181-1200(2002).

    [10] COUTARD L, CHAUMETTE F. Visual detection 3D modelbased tracking f ling on an aircraft carrier[C]2011 IEEE International Conference on Robotics Automation. Shanghai, China: IEEE, 2011: 1746−1751.

    [11] COUTARD L, CHAUMETTE F, PFLIMLIN J M. Automatic ling on aircraft carrier by visual servoing[C]2011 IEEERSJ International Conference on Intelligent Robots Systems. San Francisco, CA, USA: IEEE, 2011: 2843−2848.

    [12] G L XU, X P QI, Q H ZENG et al. Use of land's cooperative object to estimate UAV's pose for autonomous landing. Chinese Journal of Aeronautics, 26, 1498-1505(2013).

    [13] Y GUI, P Y GUO, H L ZHANG et al. Airborne vision-based navigation method for UAV accuracy landing using infrared lamps. Journal of Intelligent and Robotic Systems, 72, 197-218(2013).

    [17] W R T RODERICK, M R CUTKOSKY, D LENTINK. Bird-inspired dynamic grasping and perching in arboreal environments. Science Robotics, 6, eabj7562(2021).

    [22] SEIFRIED R, SCHIEHLEN W, EBERHARD P. The role of the coefficient of restitution on impact problems in multibody dynamics[J]. Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multibody Dynamics, 2010, 224(3): 279−306.

    [23] E PENNESTRÌ, V ROSSI, P SALVINI et al. Review and comparison of dry friction force models. Nonlinear Dynamics, 83, 1785-1801(2016).