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References

1 
H. Lee, H. J. Kim, 2014, Robust control of a quadrotor using Takagi-Sugeno fuzzy model and an LMI approach, in Proc. of International Conference on Control, Vol. automation and systems, No. , pp. 370-374DOI
2 
C. Liu, J. Pan, Y. Chang, 2016, PID and LQR Trajectory Tracking Control for An Unmanned Quadrotor Helicopter: Experimental Studies, in Proc. of the Chinese Control Conference, Vol. , No. , pp. 5566-5571DOI
3 
A. Mokhtari, A. Benallegue, and Y. Orlov, 2006, Exact Linearization and Sliding-Mode Observer for A Quadrotor Unmanned Aerial Vehicle, International Journal Robotics and Automation, Vol. 21, No. 1, pp. 39-49DOI
4 
D. Lee, H. J. Kim, S. Sastry, Jun 2009, Feedback linearization vs. Adaptive Sliding-Mode Control for A Quadrotor Helicopter, International Journal of Control Automation Systems, Vol. 7, No. 3, pp. 419-428DOI
5 
X. J. Chen, D. Li, Y. Bai, 2011, Modelling and Nero-Fuzzy Adaptive Control for Eight-Rotor MAV, International Journal of Control Automation Systems, Vol. 9, No. 6, pp. 1154-1163Google Search
6 
T. Lee, 2013, Robust Adaptive Attitude Tracking on SO(3) With an Application to a Quadrotor UAV, IEEE Transactions on control systems technology, Vol. 21, No. 5, pp. 1924-1930DOI
7 
D. W. Kim, H. J. Lee, M. Tomizuka, 2010, Fuzzy Stabilization of Nonlinear Systems under Sampled-Data Feedback: An Exact Discrete-Time Model Approach, IEEE Transactions on Fuzzy Systems, Vol. 18, No. 2, pp. 251-260DOI
8 
Y. C. Choi, H. S. Ahn, 2015, Nonlinear Control of Quadrotor Control for Point Tracking : Actual Implementation and Experimental Tests, IEEE/ASME Transactions on Mechatronics, Vol. 20, No. 3, pp. 1179-1192DOI
9 
X. Liu, Q. Zhang, 2003, Approaches to Quadratic Stability Conditions and $H_∞$ Control Designs for T-S Fuzzy Systems, IEEE Transactions on Fuzzy Systems, Vol. 11, No. 6, pp. 830-839DOI
10 
K. Tanaka, H. O. Wang, 2004, Fuzzy control systems design and analysis: a linear matrix inequality approach, John Wiley & SonsDOI
11 
H. N. Wu, S. Feng, Z. Y. Liu, et al., 2016, Disturbance Observer Based Robust Mixed $H_2$/$H_∞$ Fuzzy Tracking Control for Hypersonic Vehicles, Fuzzy Sets and Systems, Vol. 30, No. 6, pp. 118-136DOI
12 
J. Dong, Y. Wang, G. Yang, 2009, Control Synthesis of Continuous-Time T-S Fuzzy Systems with Local Nonlinear Models, IEEE Transactions on Systems, Man, and Cybernetics-Part B : Cybernetics, Vol. 39, No. 5, pp. 1245-1258DOI
13 
Y. M. Choi, D. W. Kim, 2017, A T-S Fuzzy Model Approach to Guaranteed Cost Control of Quadrotor, Journal of Institute of Control, Robotics and Systems, Vol. 23, No. 7, pp. 559-565Google Search
14 
D. W. Kim, 2019, Fuzzy model-based control of a quadrotor, Fuzzy Sets and Systems, Vol. 371, No. 15, pp. 136-147Google Search
15 
H. S. Kim, J. B. Park, Y. H. Joo, 2016, A systematic approach to fuzzy-model-based robust $H_∞$ control design for a quadrotor UAV under imperfect premise matching, International Journal of Fuzzy Systems, Vol. 19, No. 4DOI
16 
Z. Xu, X. Nian, H. Wang, Y. Chen, 2017, Robust guaranteed cost tracking control of quadrotor UAV with uncertainties, ISA Transactions, Vol. 69, pp. 157-165DOI