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72   Adaptive Identification and Control of Uncertain Systems with Non-smooth Dynamics


                        It is shown with experiments that the introduced PPF design and friction
                        compensation can improve the control performance.


                        REFERENCES
                         [1] Gang Tao, Frank L. Lewis, Adaptive Control of Nonsmooth Dynamic Systems,
                            Springer Science & Business Media, 2013.
                         [2] Henrik Olsson, Karl J. Åström, C. Canudas De Wit, Magnus Gäfvert, Pablo Lischinsky,
                            Friction models and friction compensation, European Journal of Control 4 (3) (1998)
                            176–195.
                         [3] Zamberi Jamaludin, Hendrik Van Brussel, Jan Swevers, Friction compensation of an xy
                            feed table using friction-model-based feedforward and an inverse-model-based distur-
                            bance observer, IEEE Transactions on Industrial Electronics 56 (10) (2009) 3848–3853.
                         [4] Brian Armstrong-Hélouvry, Pierre Dupont, Carlos Canudas De Wit, A survey of mod-
                            els, analysis tools and compensation methods for the control of machines with friction,
                            Automatica 30 (7) (1994) 1083–1138.
                         [5] Petros A. Ioannou, Jing Sun, Robust Adaptive Control, Courier Corporation, 2012.
                         [6] Guozhu Zhang, Jie Chen, Zhiping Li, Identifier-based adaptive robust control for ser-
                            vomechanisms with improved transient performance, IEEE Transactions on Industrial
                            Electronics 57 (7) (2010) 2536–2547.
                         [7] Xuemei Ren, Frank L. Lewis, Jingliang Zhang, Neural network compensation control
                            for mechanical systems with disturbances, Automatica 45 (5) (2009) 1221–1226.
                         [8] Faa-Jeng Lin, Po-Huan Chou, Adaptive control of two-axis motion control system
                            using interval type-2 fuzzy neural network, IEEE Transactions on Industrial Electronics
                            56 (1) (2009) 178–193.
                         [9] David Naso, Francesco Cupertino, Biagio Turchiano, Precise position control of tubu-
                            lar linear motors with neural networks and composite learning, Control Engineering
                            Practice 18 (5) (2010) 515–522.
                        [10] K.K. Tan, S.N. Huang, H.F. Dou, T.H. Lee, S.J. Chin, S.Y. Lim, Adaptive robust
                            motion control for precise trajectory tracking applications, ISA Transactions 40 (1)
                            (2001) 57–71.
                        [11] Jing Na, Xuemei Ren, Guido Herrmann, Zhi Qiao, Adaptive neural dynamic sur-
                            face control for servo systems with unknown dead-zone, Control Engineering Practice
                            19 (11) (2011) 1328–1343.
                        [12] Jing Na, Xuemei Ren, Dongdong Zheng, Adaptive control for nonlinear pure-
                            feedback systems with high-order sliding mode observer, IEEE Transactions on Neural
                            Networks and Learning Systems 24 (3) (2013) 370–382.
                        [13] Charalampos P. Bechlioulis, George A. Rovithakis, Adaptive control with guaranteed
                            transient and steady state tracking error bounds for strict feedback systems, Automatica
                            45 (2) (2009) 532–538.
                        [14] Charalampos P. Bechlioulis, George A. Rovithakis, Robust adaptive control of feed-
                            back linearizable MIMO nonlinear systems with prescribed performance, IEEE Trans-
                            actions on Automatic Control 53 (9) (2008) 2090–2099.
                        [15] C. Makkar, W.E. Dixon, W.G. Sawyer, G. Hu, A new continuously differentiable
                            friction model for control systems design, in: Advanced Intelligent Mechatronics. Pro-
                            ceedings, 2005 IEEE/ASME International Conference on, IEEE, 2005, pp. 600–605.
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