Ibrahim M. Mehedi, Uzair Ansari, Ubaid M. Al-Saggaf, and Abdulrahman H. Bajodah
[1] E.H. Dursun and A. Durdu, Position control by using PD type fuzzy logic: Experimental study on rotary servo system, 8th Int. Conf. on Electronics, Computers and Artificial Intelligence, Ploiesti, Romania, 2016, 1–6. [2] G. Galgamuwa, L. Liyanage, M. Ekanayake, and B. Samaranayake, Simplified controller for three wheeled omni directional mobile robot, 10th Int. Conf. on Industrial and Information Systems, Peradeniya, Sri Lanka, 2015, 314–319. [3] N. Rathore, D. Chauhan, and V. Singh, Tuning of PID controller for position control of dc servo motor using Luus– Jaakola optimization, Int. Conf. on Computer, Communication and Control, Indore, India, 2015, 1–5. [4] L.A. Aloo, P.K. Kihato, and S.I. Kamau, Dc servomotor-based antenna positioning control system design using hybrid PID-LQR controller, European International Journal of Science and Technology, 5(2), 2016, 17–31. [5] Z. Ma, Y. Fang, L. Liu, and K. Kang, Modeling based on BP neural network for non-sinusoidal vibration displacement control system of continuous casting mold driven by servo motor, 35th Chinese Control Conf., Chengdu, China, 2016, 2160–2165. [6] R.Y. Tendero-Reas and R.D. Reas, Study of an adaptive servo control using adaptive filtering scheme, 2nd Int. Conf. on Control, Automation and Robotics, Hong Kong, China, 2016, 154–158. [7] M. Buciakowski, M. Witczak, and J. Korbicz, Adaptive fault tolerant control: Application to a dc servo motor, 20th Int. Conf. on Methods and Models in Automation and Robotics, Miedzyzdroje, Poland, 2015, 800–805. [8] J. Chen and D.M. Dawson, Monocular camera visual servo control of wheeled mobile robots, International Journal of Robotics and Automation, 26(1), 2011, 26. [9] S.K. Kommuri, G. Shafiq, J.J. Rath, and K.C. Veluvolu, Robust control of dc motor drives using higher-order integral terminal sliding mode, 14th Int. Conf. on Control, Automation, Robotics and Vision, Phuket, Thailand, 2016, 1–6. [10] R. Chuei, Z. Cao, and Z. Man, Sliding mode based repetitive control for parameter uncertainty of a brushless dc servo motor, International Conference on Advanced Mechatronic Systems, Melbourne, VIC, Australia, 2016, 62–67. [11] M.S. Qureshi, P. Swarnkar, and S. Gupta, Assessment of dc servo motor with sliding mode control approach, 1st Int. Conf. on Control, Measurement and Instrumentation, Kolkata, India, 2016, 351–355. [12] F. Basile, P. Chiacchio, and D. Del Grosso, Implementation of hydraulic servo controllers with only position measure, International Journal of Robotics & Automation, 24(1), 2009, 20. [13] I.M. Mehedi, Full state-feedback solution for a flywheel based satellite energy and attitude control scheme, Journal of Vibro-engineering, 19(5), 2017, 3522–3532. [14] U.M. Al-Saggaf, I. Mehedi, R. Mansouri, and M. Bettayeb, State feedback with fractional integral control design based on the Bode’s ideal transfer function, International Journal of Systems Science, 47(1), 2016, 149–161. [15] U.M. Al-Saggaf, I. Mehedi, R. Mansouri, and M. Bettayeb, Rotary flexible joint control by fractional order controllers, International Journal of Control, Automation and Systems, 15(6), 2017, 2561–2569. [16] M. Bettayeb, R. Mansouri, U. Al-Saggaf, and I.M. Mehedi, Smith predictor based fractional-order-filter PID controllers design for long time delay systems, Asian Journal of Control, 19(2), 2017, 587–598. 84 [17] R.K. Govindarajan and G. Venkataramanan, Servo control of solenoid actuators using augmented feedback linearization, 18th Workshop on Control and Modeling for Power Electronics, Stanford, CA, USA, 2017, 1–6. [18] A.H. Bajodah, H. Mibar, and U. Ansari, Aircraft motion decoupling of roll and yaw dynamics using generalized dynamic inversion control, 2018 26th Mediterranean Conf. on Control and Automation (MED), Zadar, Croatia, 2018, 1–9. [19] A. Ben-Israel and T.N. Greville, Generalized inverses: theory and applications vol. 15 (Berlin: Springer Science & Business Media, 2003). [20] U. Ansari, A.H. Bajodah, and S. Alam, Generalized dynamic inversion based attitude control of autonomous underwater vehicles, IFAC-PapersOnLine, 49(23), 2016, 582–589. [21] U. Ansari, A.H. Bajodah, and M.T. Hamayun, Quadrotor control via robust generalized dynamic inversion and adaptive non-singular terminal sliding mode, Asian Journal of Control, 21, 2019, 1237–1249. [22] U. Ansari and A.H. Bajodah, Robust launch vehicle’s generalized dynamic inversion attitude control, Aircraft Engineering and Aerospace Technology, 89(6), 2017, 902–910. [23] J. Gao, Accurate control of flexible link robot arm, Master’s Thesis, Chalmers University of Technology Gothenburg, Sweden, 2018, 17–31. [24] Quanser SRV02, User manual (Markham, Ontario: Quanser Inc, 2009). [25] H.K. Khalil, Noninear systems (Englewood Cliffs, NJ: Prentice-Hall, 1996).
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