Create New Account
Login
Search or Buy Articles
Browse Journals
Browse Proceedings
Submit your Paper
Submission Information
Journal Review
Recommend to Your Library
Call for Papers
ATTITUDE CONTROL OF QUADCOPTER BASED ON SELF-TUNING LINEAR ACTIVE DISTURBANCE REJECTION, 102-109.
Song M. Jiao, Deng P. Liu, and Xiao K. Zheng
References
[1] J. Han, Control theory: Model theory or cybernetics, System Science and Mathematics, 9(4), 1989, 328–335.
[2] J. Han, Active disturbance rejection controller and its application, Control and decision, 13(1), 1998, 19–23.
[3] Y.-c. Fang, H. Shen, X.-y. Sun, et al., Unmanned helicopter heading active disturbance rejection control, Control Theory & Application, 31(2), 2014, 238–243.
[4] S. Tang, Q.H. Yang, S.K. Qian, et al., Height and attitude active disturbance rejection controller design of a small-scale helicopter, Science China Information Science, 58(3), 2015, 1–17.
[5] Z.Q. Gao, Scaling and bandwidth-parameterization based controller tuning, American Control Conf., 2003. Proc. of the IEEE, Colorado, 2003, 4989–4996.
[6] G. Farid, M. Hongwei, S.M. Ali, and Q. Liwei, A review on linear and nonlinear control techniques for position and attitude control of a quadrotor, Mechatronic Systems and Control (formerly Control and Intelligent Systems), 45(1), 2017.
[7] J. Yao, X. Zhu, and Z. Zhou, The design of sliding mode control system based on backstepping theory For BTT UAV, Mechatronic Systems and Control (formerly Control and Intelligent Systems), 36(4), 2008.
[8] S. Gonzalez-Vazquez and J. Moreno-Valenzuela, A new nonlinear PI/PID controller for quadrotor posture regulation, Electronics, Robotics and Automotive Mechanics Conf. IEEE, Morelos, 2010, 642–647.
[9] P. De Monte and B. Lohmann, Trajectory tracking control for a quadrotor helicopter based on backstepping using a decoupling quaternion parametrization, Control & Automation. IEEE, Hangzhou, China, 2013, 507–512.
[10] N. Hovakimyan and C. Cao, Adaptive control theory: Guaranteed robustness with fast adaptation, Society for Industry and Applied Mathematics, 2010, 34–118.
[11] Q. Wu, S. Ma, M. Sun, et al., Research on parameter tuning for active disturbance rejection attitude control of static unstable vehicle, Tactical Missile Technology, (2), 2016, 63–69.
[12] Q. Xu, X. Wang, Z. Wang, Design of decoupling controller for attitude control of gliding-guided projectile, System Engineering and Electronic Technology, 40(2), 2018, 384–392.
[13] Z. Wu, L. Huang, K. Wei, L. Guo, Spacecraft attitude active disturbance rejection control, Control Theory & Application, 30(12), 2013, 1617–1622.
[14] C. Peng, Y. Bai, G. Qiao, Yaw static anti-saturation compensation control for coaxial eight-rotor unmanned aerial vehicle, Robot, 40(2), 2018, 240–248.
[15] S. Yang, Research on active disturbance rejection control method for quadrotor aircraft, Dissertation, Dalian University of Technology, Dalian, China, 2014.
Important Links:
Abstract
DOI:
10.2316/J.2020.201-0022
From Journal
(201) Mechatronic Systems and Control - 2020
Go Back