Attitude Control of Unmanned Aerial Vehicle Based on Sliding Mode Technique with Parameter Estimation

سال انتشار: 1396
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 138

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شناسه ملی سند علمی:

JR_ADMTL-10-2_005

تاریخ نمایه سازی: 18 اردیبهشت 1400

چکیده مقاله:

An adaptive robust controller for nonlinear and coupling dynamic of aerial vehicle has been presented. In this paper an adaptive sliding mode controller (ASMC) is integrated to design the attitude control for the inner loops of nonlinear coupling dynamic of Unmanned Aerial Vehicle (UAV) in the presence of parametric uncertainties and disturbances. In the proposed scheme, the adaptation laws can estimate the unknown uncertain parameters and external disturbances, while the sliding mode control is used to ensure the fast response and robustify the control design against unmodeled dynamics with a small control effort.The synthesis of the adaptation laws is based on the positivity and Lyapunov design principle.  In comparison with other sliding mode approaches, the approach does not need the upper bound of parametric uncertainty and disturbances. The navigation outer loops of small UAV instead is based on PIDs to control altitude and heading. Simulation results demonstrate that the proposed controller can stabilize the nonlinear system and also it has stronger robustness with respect to the model uncertainties and gust disturbance.

نویسندگان

A. A. Akbari*

Department of Mechanical Engineering, University of Ferdowsi University of Mashhad, Iran

S. Amini

Department of Mechanical Engineering, University of Ferdowsi University of Mashhad, Iran

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  • Clough, B. T., “Unmanned Aerial Vehicles: Autonomous Control Challenges, a ...
  • Giulietti, F., Pollini, L., and Innocenti, M., “Autonomous Formation Flight”, ...
  • Ryan, A., Zennaro, M., Howell, A., Sengupta, R., and Hedrick, ...
  • Tadeo, E., Dzul, A., and Llama, M., “Linear And Nonlinear ...
  • Capello E., Guglieri G., Quagliotti F., and Sartori D., “Design ...
  • Wang E., Jianying, K., and Zhaowei Sun, T., “6-DOF Robust ...
  • Bin, X., Guo, J., and Zhang, Y., “Adaptive Backstepping Tracking ...
  • Babaei A. R., Mortazavi M., and Moradi M. H., “Classical ...
  • Shin, D. H., Kim, Y., “Reconfigurable Flight Control System Design ...
  • Yang, Y. N., Wu J., and Zheng, W., “Attitude Control ...
  • Alessandro, P., Elio, U., “Sliding Mode Control: A Survey With ...
  • Hong, T. K., Youkyung, H. L, and Youdan, K., “Integrated ...
  • Modirrousta A., Sohrab M. and Seyed Dehghan M., “Free Chattering ...
  • Bouadi, Hakim, et al, “Adaptive Sliding Mode Control for Quadrotor ...
  • Bouadi, Hakim, et al, “Flight Path Tracking Based-on Direct Adaptive ...
  • Modirrousta, A. Khodabandeh, M., “A Novel Nonlinear Hybrid Controller Design ...
  • Daewon, L., Jin Kim, H. and Sastry, Sh., “Feedback Linearization ...
  • Rajagopal, K., Bin S. N., “Robust Adaptive Control of a ...
  • Moosavian, A., Papadopoulos, E., “Free-Flying Robots In Space: an Overview ...
  • Karakas. D., “Nonlinear Modeling and Flight Control System Design of ...
  • Beard. W. R., McLain. T, “Small Unmanned Aircraft: Theory and ...
  • Roskam, J., “Airplane Flight Dynamics and Automatic Flights, Pt. 1”, ...
  • Paw, Y. C., Gary, J. B., “Development And Application of ...
  • Paw Y. C., “Synthesis and Validation of Flight Control for ...
  • Kim, Jin H., David H. S., “A Flight Control System ...
  • Utkin, K., Vadim, I., “Sliding Mode Control”, Variable Structure Systems, ...
  • Bartolini, Giorgio, et al, “A Survey of Applications of Second-Order ...
  • نمایش کامل مراجع