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Articles

Two-degree-of-freedom internal model position control and fuzzy fractional force control of nonlinear parallel robot

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Pages 2261-2279 | Received 30 Oct 2017, Accepted 05 Aug 2019, Published online: 22 Aug 2019

References

  • Delavari, H., Ghaderi, R., Ranjbar, A., & Momani, S. (2010). Fuzzy fractional order sliding mode controller for nonlinear systems. Communications in Nonlinear Science and Numerical Simulation, 15(4), 963–978. doi: 10.1016/j.cnsns.2009.05.025
  • Hou, Y., & Tong, S. (2016). Adaptive fuzzy backstepping control for a class of MIMO switched nonlinear systems with unknown control directions. Complexity, 21(6), 155–166. doi: 10.1002/cplx.21676
  • Kostić, M. D., Mataušek, M. R., & Popović, D. (2016). Modified internal model control for a therapeutic robot. Facta Universitatis, Series: Electronics and Energetics, 30(1), 137–144.
  • Lakshmana, G. N. V., Jeevaraj, S., & Geetha, S. (2016). Total ordering for intuitionistic fuzzy numbers. Complexity, 21(S2), 54–66. doi: 10.1002/cplx.21783
  • Li, D., Fan, W., Jin, Q., Tan, T. (2010). An IMC-PI∼λ D∼μ controller design for fractional calculus system. Chinese Control Conference, pp. 3581–3585.
  • Liu, X., Wang, X., Zheng, K., et al. (2014). Design of variable pitch-control system based on two-degree-of-freedom internal model control. International Conference on Information Science, Electronics and Electrical Engineering. IEEE, 1348–1352.
  • Maâmar, B., & Rachid, M. (2014). IMC-PID-fractional-order-filter controllers design for integer order systems. Isa Transactions, 53(5), 1620–1628. doi: 10.1016/j.isatra.2014.05.007
  • Pagavathigounder, B., Dhanasekaran, N., & Liyakath Ali, J. B. (2016). Robust guaranteed cost control for discrete-time systems via partially delay-dependent controller with linear fractional uncertainties. Complexity, 21(S2), 113–122. doi: 10.1002/cplx.21787
  • Pham, Q. C., & Stasse, O. (2015). Time-optimal path parameterization for redundantly actuated robots: A numerical integration approach. IEEE/ASME Transactions on Mechatronics, 20(6), 3257–3263. doi: 10.1109/TMECH.2015.2409479
  • Reham, H., Bendary, F., & Elserafi, K. (2016). Trajectory tracking control for robot manipulator using fractional order-fuzzy-PID controller. International Journal of Computer Applications, 134(15), 1–8. doi: 10.5120/ijca2016908123
  • Savran, A. I., Beke, A., Kumbasar, T., et al. (2015, September). An IMC based fuzzy self-tuning mechanism for fuzzy PID controllers. International Symposium on Innovations in Intelligent Systems and Applications, Madrid. IEEE, pp. 1–7.
  • Sébastien, B., François, C., & Philippe, M. (2017). Revisiting the determination of the singularity cases in the visual servoing of image points through the concept of hidden robot. IEEE Transactions on Robotics, 33(3), 536–546. doi: 10.1109/TRO.2016.2637912
  • Sondhi, S., & Hote, Y. V. (2014). Fractional IMC design for fractional order gas turbine model. International Conference on Industrial and Information Systems, Gwalior. IEEE, pp. 1–5.
  • Taghirad, H. D., & Bedoustani, Y. B. (2011). An analytic-iterative redundancy resolution scheme for cable-driven redundant parallel manipulators. IEEE Transactions on Robotics, 27(6), 1137–1143. doi: 10.1109/TRO.2011.2163433
  • Tchoń, K., & Ratajczak, J. (2016). Dynamically consistent Jacobian inverse for non-holonomic robotic systems. Nonlinear Dynamics, 85(1), 107–122. doi: 10.1007/s11071-016-2672-x
  • Vinopraba, T., Sivakumaran, N., & Narayanan, S. (2011). IMC based fractional order PID controller. IEEE International Conference on Industrial Technology. IEEE, pp. 71–76.
  • Wang, Z., Duan, R., Sun, G., & Chi, M. (2016). Hydraulic quadruped robot joint force control based on double internal model controller. International Journal of Control and Automation, 9(1), 241–250. doi: 10.14257/ijca.2016.9.1.22
  • Wang, B., Xue, J., Wu, F., & Wang, B. (2016). Stabilization conditions for fuzzy control of uncertain fractional order non-linear systems with random disturbances. IET Control Theory & Applications, 10(6), 637–647. doi: 10.1049/iet-cta.2015.0717
  • Wen, S., Qin, G., Zhang, B., Lam, H.K., Zhao, Y., Wang, H. (2016). The study of model predictive control algorithm based on the force/position control scheme of the 5-DOF redundant actuation parallel robot. Robotics and Autonomous Systems, 79(C), 12–25. doi: 10.1016/j.robot.2016.02.002
  • Wen, H., Xu, W., & Cong, M. (2015). Kinematic model and analysis of an actuation redundant parallel robot with higher kinematic pairs for jaw movement. IEEE Transactions on Industrial Electronics, 62(3), 1590–1598. doi: 10.1109/TIE.2014.2365432
  • Wen, S., Yu, H., Zhang, B., Zhao, Y., Lam, H. K., Qin, G., & Wang, H. (2017). Fuzzy identification and delay compensation based on the force/position control scheme of the 5-DOF redundantly actuated parallel robot. International Journal of Fuzzy Systems, 19(1), 124–140. doi: 10.1007/s40815-016-0144-6
  • Zhong, Z., Shao, Z., & Chen, T. (2016). Decentralized piecewise fuzzy H∞ output feedback control for large-scale nonlinear systems with time-varying delay. Complexity, 21(S2), 268–288. doi: 10.1002/cplx.21804
  • Zhu, Q., Yin, Z., & Zhang, Y. (2016). Research on two-degree-of-freedom internal model control strategy for induction motor based on immune algorithm.  IEEE Transactions on Industrial Electronics, 63(3), 1981–1992. doi: 10.1109/TIE.2015.2512222

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