Longitudinal flight dynamic modeling and stability analysis of flapping-wing micro air vehicles

被引:0
|
作者
Kim, Joong-Kwan [1 ]
Han, Jong-Seob [1 ]
Kim, Ho-Young [1 ]
Han, Jae-Hung [1 ]
机构
[1] Department of Aerospace Engineering, KAIST, Korea, Republic of
关键词
Direct time integration - Flapping wing - Flapping wing air vehicles - Flapping wing micro air vehicle - Linear time invariant - Longitudinal - Pitching velocity - Stability analysis;
D O I
10.5302/j.icros.2015.14.9052
中图分类号
学科分类号
摘要
This paper investigates the longitudinal flight dynamics and stability of flapping-wing micro air vehicles. Periodic external forces and moments due to the flapping motion characterize the dynamics of this system as NLTP (Non Linear Time Periodic). However, the averaging theorem can be applied to an NLTP system to obtain an NLTI (Non Linear Time Invariant) system which allows us to use a standard eigen value analysis to assess the stability of the system with linearization around a reference point. In this paper, we investigate the dynamics and stability of a hawkmoth-scale flapping-wing air vehicle by establishing an LTI (Linear Time Invariant) system model around a hovering condition. Also, a direct time integration of full nonlinear equations of motion of the flapping-wing micro air vehicle is conducted to see how the longitudinal flight dynamics appear in the time domain beyond the reference point, i.e. hovering condition. In the study, the flapping-wing air vehicle exhibited three distinct dynamic modes of motion in the longitudinal plane of motion: two stable subsidence modes and one unstable oscillatory mode. The unstable oscillatory mode is found to be a combination of a pitching velocity state and a forward/backward velocity state. © ICROS 2015.
引用
收藏
页码:1 / 6
相关论文
共 50 条
  • [41] Human Memory/Learning Inspired Control Method for Flapping-Wing Micro Air Vehicles
    Song, Y. D.
    Weng, Liguo
    Lebby, Gary
    JOURNAL OF BIONIC ENGINEERING, 2010, 7 (02) : 127 - 133
  • [42] Numerical simulation of the flow around a flapping-wing micro air vehicle in free flight
    Moriche, M.
    Hernandez-Hurtado, E.
    Flores, O.
    Garcia-Villalba, M.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 2022, 236 (03) : 468 - 476
  • [43] Design and Evaluation of a Model-Based Controller for Flapping-Wing Micro Air Vehicles
    Nogar, Stephen M.
    Serrani, Andrea
    Gogulapati, Abhijit
    McNamara, Jack J.
    Oppenheimer, Michael W.
    Doman, David B.
    JOURNAL OF GUIDANCE CONTROL AND DYNAMICS, 2018, 41 (12) : 2513 - 2528
  • [44] Development of Flapping-wing Micro Air Vehicle in Asia
    Tan, Xiaobo
    Zhang, Weiping
    Ke, Xijun
    Chen, Wenyuan
    Zou, Caijun
    Liu, Wu
    Cui, Feng
    Wu, Xiaosheng
    Li, Hongyi
    PROCEEDINGS OF THE 10TH WORLD CONGRESS ON INTELLIGENT CONTROL AND AUTOMATION (WCICA 2012), 2012, : 3939 - 3942
  • [45] Dove: A biomimetic flapping-wing micro air vehicle
    Yang, Wenqing
    Wang, Liguang
    Song, Bifeng
    INTERNATIONAL JOURNAL OF MICRO AIR VEHICLES, 2018, 10 (01) : 70 - 84
  • [46] Human Memory/Learning Inspired Control Method for Flapping-Wing Micro Air Vehicles
    Y. D. Song
    Liguo Weng
    Gary Lebby
    Journal of Bionic Engineering, 2010, 7 : 127 - 133
  • [47] Distributed State Estimation for Flapping-Wing Micro Air Vehicles with Information Fusion Correction
    Zhang, Xianglin
    Luo, Mingqiang
    Guo, Simeng
    Cui, Zhiyang
    BIOMIMETICS, 2024, 9 (03)
  • [48] Dissection of a Flexible Wing's Performance for Insect-Inspired Flapping-Wing Micro Air Vehicles
    Lu, Guang
    Yan, Jingping
    Zhang, Zhisheng
    Shi, Jinfei
    Yan, Yuling
    ADVANCED ROBOTICS, 2012, 26 (5-6) : 409 - 435
  • [49] Wing Design, Fabrication, and Analysis for an X-Wing Flapping-Wing Micro Air Vehicle
    Cheaw, Boon Hong
    Ho, Hann Woei
    Abu Bakar, Elmi
    DRONES, 2019, 3 (03) : 1 - 21
  • [50] Human Memory/Learning Inspired Control Method for Flapping-Wing Micro Air Vehicles
    Garv Lebbv
    Journal of Bionic Engineering, 2010, 7 (02) : 127 - 133