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2014 | OriginalPaper | Buchkapitel

1. Introduction

verfasst von : Wei He, Shuzhi Sam Ge, Bernard Voon Ee How, Yoo Sang Choo

Erschienen in: Dynamics and Control of Mechanical Systems in Offshore Engineering

Verlag: Springer London

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Abstract

Chapter 1 introduces the system description, background, and motivation of the study and presents several general concepts and fundamental observations.

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Literatur
1.
Zurück zum Zitat Rowe S, Mackenzie B, Snell R (2001) Deep water installation of subsea hardware. In: Proceedings of the 10th offshore symposium Rowe S, Mackenzie B, Snell R (2001) Deep water installation of subsea hardware. In: Proceedings of the 10th offshore symposium
2.
Zurück zum Zitat Eastaugh P (2005) Wideband wins the day at Ormen Lange, subsea special offshore engineer, pp 32–34 Eastaugh P (2005) Wideband wins the day at Ormen Lange, subsea special offshore engineer, pp 32–34
3.
Zurück zum Zitat Kaewunruen S, Chiravatchradj J, Chucheepsakul S (2005) Nonlinear free vibrations of marine risers/pipes transport fluid. Ocean Eng 32(3–4):417–440 Kaewunruen S, Chiravatchradj J, Chucheepsakul S (2005) Nonlinear free vibrations of marine risers/pipes transport fluid. Ocean Eng 32(3–4):417–440
4.
Zurück zum Zitat How BVE, Ge SS, Choo YS (2009) Active control of flexible marine risers. J Sound Vib 320:758–776 How BVE, Ge SS, Choo YS (2009) Active control of flexible marine risers. J Sound Vib 320:758–776
5.
Zurück zum Zitat Rustad AM (2007) Modeling and control of top tensioned risers. PhD thesis, Norwegian University of Science and Technology Rustad AM (2007) Modeling and control of top tensioned risers. PhD thesis, Norwegian University of Science and Technology
6.
Zurück zum Zitat Huse E (1993) Interaction in deep-sea riser arrays. In: The 25th annual offshore technology conference, Houston, TX, pp 313–322 Huse E (1993) Interaction in deep-sea riser arrays. In: The 25th annual offshore technology conference, Houston, TX, pp 313–322
7.
Zurück zum Zitat How BVE, Ge SS, Choo YS (2010) Dynamic load positioning for subsea installation via adaptive neural control. IEEE J Ocean Eng 35(2):366–375 How BVE, Ge SS, Choo YS (2010) Dynamic load positioning for subsea installation via adaptive neural control. IEEE J Ocean Eng 35(2):366–375
8.
Zurück zum Zitat How BVE, Ge SS, Choo YS (2011) Control of coupled vessel, crane, cable, and payload dynamics for subsea installation operations. IEEE Trans Control Syst Technol 19(1):208–220 How BVE, Ge SS, Choo YS (2011) Control of coupled vessel, crane, cable, and payload dynamics for subsea installation operations. IEEE Trans Control Syst Technol 19(1):208–220
9.
Zurück zum Zitat He W, Ge SS, Zhang S (2011) Adaptive boundary control of a flexible marine installation system. Automatica 47(12):2728–2734 MathSciNetMATH He W, Ge SS, Zhang S (2011) Adaptive boundary control of a flexible marine installation system. Automatica 47(12):2728–2734 MathSciNetMATH
10.
Zurück zum Zitat Van Amerongen J (1984) Adaptive steering of ships—a model reference approach. Automatica 20(1):3–14 MATH Van Amerongen J (1984) Adaptive steering of ships—a model reference approach. Automatica 20(1):3–14 MATH
11.
Zurück zum Zitat Sorensen A, Sagatun S, Fossen T (1996) Design of a dynamic positioning system using model-based control. Control Eng Pract 4(3):359–368 Sorensen A, Sagatun S, Fossen T (1996) Design of a dynamic positioning system using model-based control. Control Eng Pract 4(3):359–368
12.
Zurück zum Zitat Fossen T, Grovlen A (1998) Nonlinear output feedback control of dynamically positioned ships using vectorial observer backstepping. IEEE Trans Control Syst Technol 6(1):121–128 Fossen T, Grovlen A (1998) Nonlinear output feedback control of dynamically positioned ships using vectorial observer backstepping. IEEE Trans Control Syst Technol 6(1):121–128
13.
Zurück zum Zitat Ghommam J, Mnif F, Benali A, Derbel N (2006) Asymptotic backstepping stabilization of an underactuated surface vessel. IEEE Trans Control Syst Technol 14(6):1150–1157 Ghommam J, Mnif F, Benali A, Derbel N (2006) Asymptotic backstepping stabilization of an underactuated surface vessel. IEEE Trans Control Syst Technol 14(6):1150–1157
14.
Zurück zum Zitat Tee KP, Ge SS (2006) Control of fully actuated ocean surface vessels using a class of feedforward approximators. IEEE Trans Control Syst Technol 14:750–756 Tee KP, Ge SS (2006) Control of fully actuated ocean surface vessels using a class of feedforward approximators. IEEE Trans Control Syst Technol 14:750–756
15.
Zurück zum Zitat Nguyen T, Sorensen A, Tong Quek S (2007) Design of hybrid controller for dynamic positioning from calm to extreme sea conditions. Automatica 43(5):768–785 MathSciNetMATH Nguyen T, Sorensen A, Tong Quek S (2007) Design of hybrid controller for dynamic positioning from calm to extreme sea conditions. Automatica 43(5):768–785 MathSciNetMATH
16.
Zurück zum Zitat Suzuki H, Tao Q, Yoshida K (2002) Automatic installation of underwater elastic structures under unknown currents. In: Proceedings of 1998 international symposium on underwater technology. IEEE, New York, pp 274–281 Suzuki H, Tao Q, Yoshida K (2002) Automatic installation of underwater elastic structures under unknown currents. In: Proceedings of 1998 international symposium on underwater technology. IEEE, New York, pp 274–281
17.
Zurück zum Zitat Watanabe K, Suzuki H, Qi T, Toshida K (1998) Basic research on underwater docking of flexible structures. In: Proceedings of IEEE international conference on robotics and automation, vol 1. IEEE, New York, pp 458–463 Watanabe K, Suzuki H, Qi T, Toshida K (1998) Basic research on underwater docking of flexible structures. In: Proceedings of IEEE international conference on robotics and automation, vol 1. IEEE, New York, pp 458–463
18.
Zurück zum Zitat How BVE (2009) Modeling and control of subsea installation. PhD thesis, National University of Singapore How BVE (2009) Modeling and control of subsea installation. PhD thesis, National University of Singapore
19.
Zurück zum Zitat Ge SS, He W, Ren B, Choo YS (2010) Boundary control of a flexible marine installation system. In: Proceedings of the 49th IEEE conference on decision and control, Atlanta, GA, vol 1, pp 2590–2595 Ge SS, He W, Ren B, Choo YS (2010) Boundary control of a flexible marine installation system. In: Proceedings of the 49th IEEE conference on decision and control, Atlanta, GA, vol 1, pp 2590–2595
20.
Zurück zum Zitat He W (2011) Modeling and control of marine flexible systems. PhD thesis, National University of Singapore He W (2011) Modeling and control of marine flexible systems. PhD thesis, National University of Singapore
21.
Zurück zum Zitat Fung P, Grimble M (1983) Dynamic ship positioning using a self-tuning Kalman filter. IEEE Trans Autom Control 28(3):339–350 MATH Fung P, Grimble M (1983) Dynamic ship positioning using a self-tuning Kalman filter. IEEE Trans Autom Control 28(3):339–350 MATH
22.
Zurück zum Zitat Saelid S, Jenssen N, Balchen J (1983) Design and analysis of a dynamic positioning system based on Kalman filtering and optimal control. IEEE Trans Autom Control 28(3):331–339 Saelid S, Jenssen N, Balchen J (1983) Design and analysis of a dynamic positioning system based on Kalman filtering and optimal control. IEEE Trans Autom Control 28(3):331–339
23.
Zurück zum Zitat Robertsson A, Johansson R (1998) Comments on “Nonlinear output feedback control of dynamically positioned ships using vectorial observer backstepping”. IEEE Trans Control Syst Technol 6(3):439–441 Robertsson A, Johansson R (1998) Comments on “Nonlinear output feedback control of dynamically positioned ships using vectorial observer backstepping”. IEEE Trans Control Syst Technol 6(3):439–441
24.
Zurück zum Zitat Fossen TI, Strand JP (1999) Passive nonlinear observer design for ships using Lyapunov methods: full-scale experiments with as supply vessel. Automatica 35(1):3–16 MathSciNetMATH Fossen TI, Strand JP (1999) Passive nonlinear observer design for ships using Lyapunov methods: full-scale experiments with as supply vessel. Automatica 35(1):3–16 MathSciNetMATH
25.
Zurück zum Zitat Fossen TI, Strand JP (2001) Nonlinear passive weather optimal positioning control (WOPC) system for ships and rigs: experimental results. Automatica 37(5):701–715 MathSciNetMATH Fossen TI, Strand JP (2001) Nonlinear passive weather optimal positioning control (WOPC) system for ships and rigs: experimental results. Automatica 37(5):701–715 MathSciNetMATH
26.
Zurück zum Zitat Do KD, Jiang ZP, Pan J (2005) Global partial-state feedback and output-feedback tracking controllers for underactuated ships. Syst Control Lett 54(10):1015–1036 MathSciNetMATH Do KD, Jiang ZP, Pan J (2005) Global partial-state feedback and output-feedback tracking controllers for underactuated ships. Syst Control Lett 54(10):1015–1036 MathSciNetMATH
27.
Zurück zum Zitat Do KD, Pan J (2006) Underactuated ships follow smooth paths with integral actions and without velocity measurements for feedback: theory and experiments. IEEE Trans Control Syst Technol 14(2):308–322 Do KD, Pan J (2006) Underactuated ships follow smooth paths with integral actions and without velocity measurements for feedback: theory and experiments. IEEE Trans Control Syst Technol 14(2):308–322
28.
Zurück zum Zitat Do KD, Pan J (2009) Control of ships and underwater vehicles: design for underactuated and nonlinear marine systems. Springer, New York Do KD, Pan J (2009) Control of ships and underwater vehicles: design for underactuated and nonlinear marine systems. Springer, New York
29.
Zurück zum Zitat Leira BJ, Sorensen AJ, Larsen CM (2004) A reliability-based control algorithm for dynamic positioning of floating vessels. Struct Saf 26(1):1–28 Leira BJ, Sorensen AJ, Larsen CM (2004) A reliability-based control algorithm for dynamic positioning of floating vessels. Struct Saf 26(1):1–28
30.
Zurück zum Zitat Aamo O, Fossen T (1999) Controlling line tension in thruster assisted mooring systems. In: Proceedings of the IEEE international conference on control applications, Hawaii, US, vol 2, pp 1009–1104 Aamo O, Fossen T (1999) Controlling line tension in thruster assisted mooring systems. In: Proceedings of the IEEE international conference on control applications, Hawaii, US, vol 2, pp 1009–1104
31.
Zurück zum Zitat Berntsen P, Aamo O, Leira B (2009) Ensuring mooring line integrity by dynamic positioning: controller design and experimental tests. Automatica 45(5):1285–1290 MathSciNetMATH Berntsen P, Aamo O, Leira B (2009) Ensuring mooring line integrity by dynamic positioning: controller design and experimental tests. Automatica 45(5):1285–1290 MathSciNetMATH
32.
Zurück zum Zitat Nguyen DT, Sorensen AJ (2009) Switching control for thruster-assisted position mooring. Control Eng Pract 17(9):985–994 Nguyen DT, Sorensen AJ (2009) Switching control for thruster-assisted position mooring. Control Eng Pract 17(9):985–994
33.
Zurück zum Zitat Nguyen DT, Sorensen AJ (2009) Setpoint chasing for thruster-assisted position mooring. IEEE J Ocean Eng 34(4):548–558 Nguyen DT, Sorensen AJ (2009) Setpoint chasing for thruster-assisted position mooring. IEEE J Ocean Eng 34(4):548–558
34.
Zurück zum Zitat Nguyen DH, Nguyen DT, Quek S, Sorensen A (2010) Control of marine riser end angles by position mooring. Control Eng Pract 18(9):1013–1021 Nguyen DH, Nguyen DT, Quek S, Sorensen A (2010) Control of marine riser end angles by position mooring. Control Eng Pract 18(9):1013–1021
35.
Zurück zum Zitat Aamo O, Fossen T (2001) Finite element modelling of moored vessels. Math Comput Model Dyn Syst 7(1):47–75 MATH Aamo O, Fossen T (2001) Finite element modelling of moored vessels. Math Comput Model Dyn Syst 7(1):47–75 MATH
36.
Zurück zum Zitat Sorensen AJ, Strand JP, Fossen TI (1999) Thruster assisted position mooring system for turret-anchored FPSOs. In: Proceedings of the 1999 IEEE international conference on control applications, vol 2 Sorensen AJ, Strand JP, Fossen TI (1999) Thruster assisted position mooring system for turret-anchored FPSOs. In: Proceedings of the 1999 IEEE international conference on control applications, vol 2
37.
Zurück zum Zitat Dai S-L, Wang C, Luo F (2012) Identification and learning control of ocean surface ship using neural networks. IEEE Trans Ind Inform 8(34):801–810 Dai S-L, Wang C, Luo F (2012) Identification and learning control of ocean surface ship using neural networks. IEEE Trans Ind Inform 8(34):801–810
38.
Zurück zum Zitat Cui R, Ge SS, How VEB, Choo YS (2010) Leader-follower formation control of underactuated autonomous underwater vehicles. Ocean Eng 37(17):1491–1502 Cui R, Ge SS, How VEB, Choo YS (2010) Leader-follower formation control of underactuated autonomous underwater vehicles. Ocean Eng 37(17):1491–1502
39.
Zurück zum Zitat Berntsen PIB, Aamo OM, Leira BJ, Sørensen AJ (2008) Structural reliability-based control of moored interconnected structures. Control Eng Pract 16(4):495–504 Berntsen PIB, Aamo OM, Leira BJ, Sørensen AJ (2008) Structural reliability-based control of moored interconnected structures. Control Eng Pract 16(4):495–504
40.
Zurück zum Zitat Chen M, Ge SS, How BVE, Choo YS (2012) Robust adaptive position mooring control for marine vessels. IEEE Trans Control Syst Technol 99:1–15 Chen M, Ge SS, How BVE, Choo YS (2012) Robust adaptive position mooring control for marine vessels. IEEE Trans Control Syst Technol 99:1–15
41.
Zurück zum Zitat Huang T, Chucheepsakul S (1985) Large displacement analysis of a marine riser. J Energy Resour Technol 107:54 Huang T, Chucheepsakul S (1985) Large displacement analysis of a marine riser. J Energy Resour Technol 107:54
42.
Zurück zum Zitat Bernitsas M, Kokarakis J, Imron A (1985) Large deformation three-dimensional static analysis of deep water marine risers. Appl Ocean Res 7(4):178–187 Bernitsas M, Kokarakis J, Imron A (1985) Large deformation three-dimensional static analysis of deep water marine risers. Appl Ocean Res 7(4):178–187
43.
Zurück zum Zitat Huang T, Kang Q (1991) Three dimensional analysis of a marine riser with large displacements. Int J Offshore Polar Eng 1(4):300–306 Huang T, Kang Q (1991) Three dimensional analysis of a marine riser with large displacements. Int J Offshore Polar Eng 1(4):300–306
44.
Zurück zum Zitat Patel M, Jesudasen A (1987) Theory and model tests for the dynamic response of free hanging risers. J Sound Vib 112(1):149–166 Patel M, Jesudasen A (1987) Theory and model tests for the dynamic response of free hanging risers. J Sound Vib 112(1):149–166
45.
Zurück zum Zitat Young RD, Fowler JR, Fisher EA, Luke RR (1978) Dynamic analysis as an aid to the design of marine risers. J Press Vessel Technol 100:200–205 Young RD, Fowler JR, Fisher EA, Luke RR (1978) Dynamic analysis as an aid to the design of marine risers. J Press Vessel Technol 100:200–205
46.
Zurück zum Zitat Aldraihem O, Wetherhold R, Singh T (1997) Distributed control of laminated beams: Timoshenko theory vs Euler–Bernoulli theory. J Intell Mater Syst Struct 8(2):149 Aldraihem O, Wetherhold R, Singh T (1997) Distributed control of laminated beams: Timoshenko theory vs Euler–Bernoulli theory. J Intell Mater Syst Struct 8(2):149
47.
Zurück zum Zitat Do K, Pan J (2009) Boundary control of three-dimensional inextensible marine risers. J Sound Vib 327(3–5):299–321 Do K, Pan J (2009) Boundary control of three-dimensional inextensible marine risers. J Sound Vib 327(3–5):299–321
48.
Zurück zum Zitat Do K, Pan J (2008) Boundary control of transverse motion of marine risers with actuator dynamics. J Sound Vib 318(4–5):768–791 Do K, Pan J (2008) Boundary control of transverse motion of marine risers with actuator dynamics. J Sound Vib 318(4–5):768–791
49.
Zurück zum Zitat Ge SS, He W, How BVE, Choo YS (2010) Boundary control of a coupled nonlinear flexible marine riser. IEEE Trans Control Syst Technol 18(5):1080–1091 Ge SS, He W, How BVE, Choo YS (2010) Boundary control of a coupled nonlinear flexible marine riser. IEEE Trans Control Syst Technol 18(5):1080–1091
50.
Zurück zum Zitat He W, Ge SS, How BVE, Choo YS, Hong K-S (2011) Robust adaptive boundary control of a flexible marine riser with vessel dynamics. Automatica 47(4):722–732 MathSciNetMATH He W, Ge SS, How BVE, Choo YS, Hong K-S (2011) Robust adaptive boundary control of a flexible marine riser with vessel dynamics. Automatica 47(4):722–732 MathSciNetMATH
51.
Zurück zum Zitat He W, How BVE, Ge SS, Choo YS (2010) Boundary control of a flexible marine riser with vessel dynamics. In: Proceedings of the American control conference, Baltimore, MD, pp 1532–1537 He W, How BVE, Ge SS, Choo YS (2010) Boundary control of a flexible marine riser with vessel dynamics. In: Proceedings of the American control conference, Baltimore, MD, pp 1532–1537
52.
Zurück zum Zitat Logan JD (2006) Applied mathematics, 3rd edn. Wiley, New York MATH Logan JD (2006) Applied mathematics, 3rd edn. Wiley, New York MATH
53.
Zurück zum Zitat Balas MJ (1978) Feedback control of flexible systems. IEEE Trans Autom Control 23:673–679 MATH Balas MJ (1978) Feedback control of flexible systems. IEEE Trans Autom Control 23:673–679 MATH
54.
Zurück zum Zitat Vandegrift MW, Lewis FL, Zhu SQ (1994) Flexible-link robot arm control by a feedback linearization/singular perturbation approach. J Robot Syst 11(7):591–603 MATH Vandegrift MW, Lewis FL, Zhu SQ (1994) Flexible-link robot arm control by a feedback linearization/singular perturbation approach. J Robot Syst 11(7):591–603 MATH
55.
Zurück zum Zitat Lin J, Lewis FL (1994) Enhanced measurement and estimation methodology for flexible link arm control. J Robot Syst 11(5):367–385 Lin J, Lewis FL (1994) Enhanced measurement and estimation methodology for flexible link arm control. J Robot Syst 11(5):367–385
56.
Zurück zum Zitat Lin J, Lewis FL (1994) A symbolic formulation of dynamic equations for a manipulator with rigid and flexible links. Int J Robot Res 13(5):454 Lin J, Lewis FL (1994) A symbolic formulation of dynamic equations for a manipulator with rigid and flexible links. Int J Robot Res 13(5):454
57.
Zurück zum Zitat Armaou A, Christofides P (2000) Wave suppression by nonlinear finite-dimensional control. Chem Eng Sci 55(14):2627–2640 Armaou A, Christofides P (2000) Wave suppression by nonlinear finite-dimensional control. Chem Eng Sci 55(14):2627–2640
58.
Zurück zum Zitat Christofides P, Armaou A (2000) Global stabilization of the Kuramoto–Sivashinsky equation via distributed output feedback control. Syst Control Lett 39(4):283–294 MathSciNetMATH Christofides P, Armaou A (2000) Global stabilization of the Kuramoto–Sivashinsky equation via distributed output feedback control. Syst Control Lett 39(4):283–294 MathSciNetMATH
59.
Zurück zum Zitat Sakawa Y, Matsuno F, Fukushima S (1985) Modeling and feedback control of a flexible arm. J Robot Syst 2(4):453–472 Sakawa Y, Matsuno F, Fukushima S (1985) Modeling and feedback control of a flexible arm. J Robot Syst 2(4):453–472
60.
Zurück zum Zitat Ge SS, Lee TH, Zhu G (1997) A nonlinear feedback controller for a single-link flexible manipulator based on a finite element model. J Robot Syst 14(3):165–178 MATH Ge SS, Lee TH, Zhu G (1997) A nonlinear feedback controller for a single-link flexible manipulator based on a finite element model. J Robot Syst 14(3):165–178 MATH
61.
Zurück zum Zitat Ge SS, Lee TH, Zhu G (1997) Non-model-based position control of a planar multi-link flexible robot. Mech Syst Signal Process 11(5):707–724 Ge SS, Lee TH, Zhu G (1997) Non-model-based position control of a planar multi-link flexible robot. Mech Syst Signal Process 11(5):707–724
62.
Zurück zum Zitat Slotine J, Li W (1991) Applied nonlinear control. Prentice Hall, Englewood Cliffs MATH Slotine J, Li W (1991) Applied nonlinear control. Prentice Hall, Englewood Cliffs MATH
63.
Zurück zum Zitat Krstic M, Kanellakopoulos I, Kokotovic P (1995) Nonlinear and adaptive control design. Wiley, New York Krstic M, Kanellakopoulos I, Kokotovic P (1995) Nonlinear and adaptive control design. Wiley, New York
64.
Zurück zum Zitat Ge SS, Lee TH, Harris CJ (1998) Adaptive neural network control of robotic manipulators. World Scientific, London Ge SS, Lee TH, Harris CJ (1998) Adaptive neural network control of robotic manipulators. World Scientific, London
65.
Zurück zum Zitat Ge SS, Hang CC, Lee TH, Zhang T (2001) Stable adaptive neural network control. Kluwer Academic, Boston Ge SS, Hang CC, Lee TH, Zhang T (2001) Stable adaptive neural network control. Kluwer Academic, Boston
66.
Zurück zum Zitat Khalil HK (2002) Nonlinear systems. Prentice Hall, New Jersey MATH Khalil HK (2002) Nonlinear systems. Prentice Hall, New Jersey MATH
67.
Zurück zum Zitat Ge SS, Lee TH, Zhu G (1998) Improving regulation of a single-link flexible manipulator with strain feedback. IEEE Trans Robot Autom 14(1):179–185 Ge SS, Lee TH, Zhu G (1998) Improving regulation of a single-link flexible manipulator with strain feedback. IEEE Trans Robot Autom 14(1):179–185
68.
69.
Zurück zum Zitat Meirovitch L, Baruh H (1983) On the problem of observation spillover in self-adjoint distributed systems. J Optim Theory Appl 30(2):269–291 MathSciNet Meirovitch L, Baruh H (1983) On the problem of observation spillover in self-adjoint distributed systems. J Optim Theory Appl 30(2):269–291 MathSciNet
70.
Zurück zum Zitat Ge SS, Lee TH, Zhu G, Hong F (2001) Variable structure control of a distributed parameter flexible beam. J Robot Syst 18:17–27 MATH Ge SS, Lee TH, Zhu G, Hong F (2001) Variable structure control of a distributed parameter flexible beam. J Robot Syst 18:17–27 MATH
71.
Zurück zum Zitat Zhu G, Ge SS (1998) A quasi-tracking approach for finite-time control of a mass-beam system. Automatica 34(7):881–888 MathSciNetMATH Zhu G, Ge SS (1998) A quasi-tracking approach for finite-time control of a mass-beam system. Automatica 34(7):881–888 MathSciNetMATH
72.
Zurück zum Zitat Ge SS, Lee TH, Zhu G (1996) Energy-based robust controller design for multi-link flexible robots. Mechatronics 6(7):779–798 Ge SS, Lee TH, Zhu G (1996) Energy-based robust controller design for multi-link flexible robots. Mechatronics 6(7):779–798
73.
Zurück zum Zitat Lee TH, Ge SS, Wang Z (2001) Adaptive robust controller design for multi-link flexible robots. Mechatronics 11(8):951–967 Lee TH, Ge SS, Wang Z (2001) Adaptive robust controller design for multi-link flexible robots. Mechatronics 11(8):951–967
74.
Zurück zum Zitat Ge SS, Lee TH, Wang Z (2001) Model-free regulation of multi-link smart materials robots. IEEE/ASME Trans Mechatron 6(3):346–351 Ge SS, Lee TH, Wang Z (2001) Model-free regulation of multi-link smart materials robots. IEEE/ASME Trans Mechatron 6(3):346–351
75.
Zurück zum Zitat Bentsman J, Hong K-S (1991) Vibrational stabilization of nonlinear parabolic systems with Neumann boundary conditions. IEEE Trans Autom Control 36(4):501–507 MathSciNet Bentsman J, Hong K-S (1991) Vibrational stabilization of nonlinear parabolic systems with Neumann boundary conditions. IEEE Trans Autom Control 36(4):501–507 MathSciNet
76.
Zurück zum Zitat Bentsman J, Hong K-S, Fakhfakh J (1991) Vibrational control of nonlinear time lag systems: vibrational stabilization and transient behavior. Automatica 27(3):491–500 MathSciNetMATH Bentsman J, Hong K-S, Fakhfakh J (1991) Vibrational control of nonlinear time lag systems: vibrational stabilization and transient behavior. Automatica 27(3):491–500 MathSciNetMATH
77.
Zurück zum Zitat Bentsman J, Hong K-S (1993) Transient behavior analysis of vibrationally controlled nonlinear parabolic systems with Neumann boundary conditions. IEEE Trans Autom Control 38(10):1603–1607 MathSciNetMATH Bentsman J, Hong K-S (1993) Transient behavior analysis of vibrationally controlled nonlinear parabolic systems with Neumann boundary conditions. IEEE Trans Autom Control 38(10):1603–1607 MathSciNetMATH
78.
Zurück zum Zitat Hong K-S, Bentsman J (1994) Direct adaptive control of parabolic systems: algorithm synthesis and convergence and stability analysis. IEEE Trans Autom Control 39(10):2018–2033 MathSciNetMATH Hong K-S, Bentsman J (1994) Direct adaptive control of parabolic systems: algorithm synthesis and convergence and stability analysis. IEEE Trans Autom Control 39(10):2018–2033 MathSciNetMATH
79.
Zurück zum Zitat Hong K-S, Bentsman J (1994) Application of averaging method for integro-differential equations to model reference adaptive control of parabolic systems. Automatica 30(9):1415–1419 MathSciNetMATH Hong K-S, Bentsman J (1994) Application of averaging method for integro-differential equations to model reference adaptive control of parabolic systems. Automatica 30(9):1415–1419 MathSciNetMATH
80.
Zurück zum Zitat Yang K-J, Hong K-S, Matsuno F (2004) Robust adaptive boundary control of an axially moving string under a spatiotemporally varying tension. J Sound Vib 273(4–5):1007–1029 MathSciNetMATH Yang K-J, Hong K-S, Matsuno F (2004) Robust adaptive boundary control of an axially moving string under a spatiotemporally varying tension. J Sound Vib 273(4–5):1007–1029 MathSciNetMATH
81.
Zurück zum Zitat Nguyen QC, Hong K-S (2010) Asymptotic stabilization of a nonlinear axially moving string by adaptive boundary control. J Sound Vib 329(22):4588–4603 Nguyen QC, Hong K-S (2010) Asymptotic stabilization of a nonlinear axially moving string by adaptive boundary control. J Sound Vib 329(22):4588–4603
82.
Zurück zum Zitat Nguyen QC, Hong K-S (2012) Simultaneous control of longitudinal and transverse vibrations of an axially moving string with velocity tracking. J Sound Vib 331(13):3006–3019 Nguyen QC, Hong K-S (2012) Simultaneous control of longitudinal and transverse vibrations of an axially moving string with velocity tracking. J Sound Vib 331(13):3006–3019
83.
Zurück zum Zitat Bamieh B, Paganini F, Dahleh M (2002) Distributed control of spatially invariant systems. IEEE Trans Autom Control 47(7):1091–1107 MathSciNet Bamieh B, Paganini F, Dahleh M (2002) Distributed control of spatially invariant systems. IEEE Trans Autom Control 47(7):1091–1107 MathSciNet
84.
Zurück zum Zitat Wu F (2003) Distributed control for interconnected linear parameter-dependent systems. IEE Proc, Control Theory Appl 150:518 Wu F (2003) Distributed control for interconnected linear parameter-dependent systems. IEE Proc, Control Theory Appl 150:518
85.
Zurück zum Zitat Banks H, Smith R, Wang Y (1997) Smart material structures: modeling, estimation, and control. Wiley, New York Banks H, Smith R, Wang Y (1997) Smart material structures: modeling, estimation, and control. Wiley, New York
86.
Zurück zum Zitat Ge SS, Lee TH, Gong J, Wang Z (2000) Model-free controller design for a single-link flexible smart materials robot. Int J Control 73(6):531–544 MathSciNetMATH Ge SS, Lee TH, Gong J, Wang Z (2000) Model-free controller design for a single-link flexible smart materials robot. Int J Control 73(6):531–544 MathSciNetMATH
87.
Zurück zum Zitat Ge SS, Lee TH, Gong JQ (1999) A robust distributed controller of a single-link SCARA/Cartesian smart materials robot. Mechatronics 9(1):65–93 Ge SS, Lee TH, Gong JQ (1999) A robust distributed controller of a single-link SCARA/Cartesian smart materials robot. Mechatronics 9(1):65–93
88.
Zurück zum Zitat Rahn CD (2001) Mechatronic control of distributed noise and vibration. Springer, New York MATH Rahn CD (2001) Mechatronic control of distributed noise and vibration. Springer, New York MATH
89.
Zurück zum Zitat Ge SS, Lee TH, Zhu G (1996) Genetic algorithm tuning of Lyapunov-based controllers: an application to a single-link flexible robot system. IEEE Trans Ind Electron 43(5):567–574 Ge SS, Lee TH, Zhu G (1996) Genetic algorithm tuning of Lyapunov-based controllers: an application to a single-link flexible robot system. IEEE Trans Ind Electron 43(5):567–574
90.
Zurück zum Zitat Ge SS, Lee TH, Zhu G (1998) Asymptotically stable end-point regulation of a flexible SCARA/Cartesian robot. IEEE/ASME Trans Mechatron 3(2):138–144 Ge SS, Lee TH, Zhu G (1998) Asymptotically stable end-point regulation of a flexible SCARA/Cartesian robot. IEEE/ASME Trans Mechatron 3(2):138–144
91.
Zurück zum Zitat Morgul O (1990) Control and stabilization of a flexible beam attached to a rigid body. Int J Control 51(1):11–31 MathSciNet Morgul O (1990) Control and stabilization of a flexible beam attached to a rigid body. Int J Control 51(1):11–31 MathSciNet
92.
Zurück zum Zitat Morgul O (1991) Orientation and stabilization of a flexible beam attached to a rigid body: planar motion. IEEE Trans Autom Control 36(8):953–962 MathSciNet Morgul O (1991) Orientation and stabilization of a flexible beam attached to a rigid body: planar motion. IEEE Trans Autom Control 36(8):953–962 MathSciNet
93.
Zurück zum Zitat Morgul O (1992) Dynamic boundary control of a Euler–Bernoulli beam. IEEE Trans Autom Control 37(5):639–642 MathSciNet Morgul O (1992) Dynamic boundary control of a Euler–Bernoulli beam. IEEE Trans Autom Control 37(5):639–642 MathSciNet
94.
Zurück zum Zitat Morgul O, Rao B, Conrad F (2002) On the stabilization of a cable with a tip mass. IEEE Trans Autom Control 39(10):2140–2145 MathSciNet Morgul O, Rao B, Conrad F (2002) On the stabilization of a cable with a tip mass. IEEE Trans Autom Control 39(10):2140–2145 MathSciNet
95.
Zurück zum Zitat Morgul O (1994) A dynamic control law for the wave equation. Automatica 30(11):1785–1792 MathSciNet Morgul O (1994) A dynamic control law for the wave equation. Automatica 30(11):1785–1792 MathSciNet
96.
Zurück zum Zitat Morgul O (1994) Control and stabilization of a rotating flexible structure. Automatica 30(2):351–356 MathSciNet Morgul O (1994) Control and stabilization of a rotating flexible structure. Automatica 30(2):351–356 MathSciNet
97.
Zurück zum Zitat Geniele H, Patel R, Khorasani K (1997) End-point control of a flexible-link manipulator: theory and experiments. IEEE Trans Control Syst Technol 5(6):556–570 Geniele H, Patel R, Khorasani K (1997) End-point control of a flexible-link manipulator: theory and experiments. IEEE Trans Control Syst Technol 5(6):556–570
98.
Zurück zum Zitat Qu Z (2001) Robust and adaptive boundary control of a stretched string on a moving transporter. IEEE Trans Autom Control 46(3):470–476 MATH Qu Z (2001) Robust and adaptive boundary control of a stretched string on a moving transporter. IEEE Trans Autom Control 46(3):470–476 MATH
99.
Zurück zum Zitat Qu Z (2002) An iterative learning algorithm for boundary control of a stretched moving string. Automatica 38(5):821–827 MathSciNetMATH Qu Z (2002) An iterative learning algorithm for boundary control of a stretched moving string. Automatica 38(5):821–827 MathSciNetMATH
100.
Zurück zum Zitat Qu Z, Xu J (2002) Model-based learning controls and their comparisons using Lyapunov direct method. Asian J Control 4(1):99–110 Qu Z, Xu J (2002) Model-based learning controls and their comparisons using Lyapunov direct method. Asian J Control 4(1):99–110
101.
Zurück zum Zitat Rahn C, Zhang F, Joshi S, Dawson D (1999) Asymptotically stabilizing angle feedback for a flexible cable gantry crane. J Dyn Syst Meas Control 121:563–565 Rahn C, Zhang F, Joshi S, Dawson D (1999) Asymptotically stabilizing angle feedback for a flexible cable gantry crane. J Dyn Syst Meas Control 121:563–565
102.
Zurück zum Zitat Baicu CF, Rahn CD, Nibali BD (1996) Active boundary control of elastic cables: theory and experiment. J Sound Vib 198:17–26 Baicu CF, Rahn CD, Nibali BD (1996) Active boundary control of elastic cables: theory and experiment. J Sound Vib 198:17–26
103.
Zurück zum Zitat Shahruz SM, Krishna LG (1996) Boundary control of a nonlinear string. J Sound Vib 195:169–174 MathSciNetMATH Shahruz SM, Krishna LG (1996) Boundary control of a nonlinear string. J Sound Vib 195:169–174 MathSciNetMATH
104.
Zurück zum Zitat Hu J (1999) Active impedance control of linear one-dimensional wave equations. Int J Control 72(3):247–257 MATH Hu J (1999) Active impedance control of linear one-dimensional wave equations. Int J Control 72(3):247–257 MATH
105.
Zurück zum Zitat Fung RF, Tseng CC (1999) Boundary control of an axially moving string via Lyapunov method. J Dyn Syst Meas Control 121:105–110 Fung RF, Tseng CC (1999) Boundary control of an axially moving string via Lyapunov method. J Dyn Syst Meas Control 121:105–110
106.
Zurück zum Zitat Fard M, Sagatun S (2001) Exponential stabilization of a transversely vibrating beam via boundary control. J Sound Vib 240(4):613–622 MathSciNetMATH Fard M, Sagatun S (2001) Exponential stabilization of a transversely vibrating beam via boundary control. J Sound Vib 240(4):613–622 MathSciNetMATH
107.
Zurück zum Zitat Fard M, Sagatun S (2001) Exponential stabilization of a transversely vibrating beam by boundary control via Lyapunov’s direct method. J Dyn Syst Meas Control 123:195–200 Fard M, Sagatun S (2001) Exponential stabilization of a transversely vibrating beam by boundary control via Lyapunov’s direct method. J Dyn Syst Meas Control 123:195–200
108.
Zurück zum Zitat Choi J-Y, Hong K-S, Yang K-J (2004) Exponential stabilization of an axially moving tensioned strip by passive damping and boundary control. J Vib Control 10(5):661 MathSciNetMATH Choi J-Y, Hong K-S, Yang K-J (2004) Exponential stabilization of an axially moving tensioned strip by passive damping and boundary control. J Vib Control 10(5):661 MathSciNetMATH
109.
Zurück zum Zitat Yang K-J, Hong K-S, Matsuno F (2005) Boundary control of a translating tensioned beam with varying speed. IEEE/ASME Trans Mechatron 10(5):594–597 Yang K-J, Hong K-S, Matsuno F (2005) Boundary control of a translating tensioned beam with varying speed. IEEE/ASME Trans Mechatron 10(5):594–597
110.
Zurück zum Zitat Yang K-J, Hong K-S, Matsuno F (2005) Robust boundary control of an axially moving string by using a PR transfer function. IEEE Trans Autom Control 50(12):2053–2058 MathSciNet Yang K-J, Hong K-S, Matsuno F (2005) Robust boundary control of an axially moving string by using a PR transfer function. IEEE Trans Autom Control 50(12):2053–2058 MathSciNet
111.
Zurück zum Zitat Yang K-J, Hong K-S, Matsuno F (2005) Energy-based control of axially translating beams: varying tension, varying speed, and disturbance adaptation. IEEE Trans Control Syst Technol 13(6):1045–1054 Yang K-J, Hong K-S, Matsuno F (2005) Energy-based control of axially translating beams: varying tension, varying speed, and disturbance adaptation. IEEE Trans Control Syst Technol 13(6):1045–1054
112.
Zurück zum Zitat Kim C-S, Hong K-S (2009) Boundary control of container cranes from the perspective of controlling an axially moving string system. Int J Control Autom Syst 7(3):437–445 Kim C-S, Hong K-S (2009) Boundary control of container cranes from the perspective of controlling an axially moving string system. Int J Control Autom Syst 7(3):437–445
113.
Zurück zum Zitat Ngo QH, Hong K-S (2009) Skew control of a quay container crane. J Mech Sci Technol 23(12):3332–3339 Ngo QH, Hong K-S (2009) Skew control of a quay container crane. J Mech Sci Technol 23(12):3332–3339
114.
Zurück zum Zitat Krstic M, Smyshlyaev A (2008) Boundary control of PDEs: a course on backstepping designs. SIAM, Philadelphia Krstic M, Smyshlyaev A (2008) Boundary control of PDEs: a course on backstepping designs. SIAM, Philadelphia
115.
Zurück zum Zitat Li T, Hou Z (2006) Exponential stabilization of an axially moving string with geometrical nonlinearity by linear boundary feedback. J Sound Vib 296(4–5):861–870 MathSciNetMATH Li T, Hou Z (2006) Exponential stabilization of an axially moving string with geometrical nonlinearity by linear boundary feedback. J Sound Vib 296(4–5):861–870 MathSciNetMATH
116.
Zurück zum Zitat Li T, Hou Z, Li J (2008) Stabilization analysis of a generalized nonlinear axially moving string by boundary velocity feedback. Automatica 44(2):498–503 MathSciNet Li T, Hou Z, Li J (2008) Stabilization analysis of a generalized nonlinear axially moving string by boundary velocity feedback. Automatica 44(2):498–503 MathSciNet
117.
Zurück zum Zitat Mahmood IA, Moheimani SOR, Bhikkaji B (2008) Precise tip positioning of a flexible manipulator using resonant control. IEEE/ASME Trans Mechatron 13(2):180–186 Mahmood IA, Moheimani SOR, Bhikkaji B (2008) Precise tip positioning of a flexible manipulator using resonant control. IEEE/ASME Trans Mechatron 13(2):180–186
118.
Zurück zum Zitat Pereira E, Aphale SS, Feliu V, Moheimani SOR (2010) Integral resonant control for vibration damping and precise tip-positioning of a single-link flexible manipulator. IEEE/ASME Trans Mechatron 99:1–9 Pereira E, Aphale SS, Feliu V, Moheimani SOR (2010) Integral resonant control for vibration damping and precise tip-positioning of a single-link flexible manipulator. IEEE/ASME Trans Mechatron 99:1–9
119.
Zurück zum Zitat Halim D, Moheimani SOR (2001) Spatial resonant control of flexible structures-application to a piezoelectric laminate beam. IEEE Trans Control Syst Technol 9(1):37–53 Halim D, Moheimani SOR (2001) Spatial resonant control of flexible structures-application to a piezoelectric laminate beam. IEEE Trans Control Syst Technol 9(1):37–53
120.
Zurück zum Zitat Endo K, Matsuno F, Kawasaki H (2009) Simple boundary cooperative control of two one-link flexible arms for grasping. IEEE Trans Autom Control 54(10):2470–2476 MathSciNet Endo K, Matsuno F, Kawasaki H (2009) Simple boundary cooperative control of two one-link flexible arms for grasping. IEEE Trans Autom Control 54(10):2470–2476 MathSciNet
121.
Zurück zum Zitat He W, Ge SS (2012) Robust adaptive boundary control of a vibrating string under unknown time-varying disturbance. IEEE Trans Control Syst Technol 20(1):48–58 He W, Ge SS (2012) Robust adaptive boundary control of a vibrating string under unknown time-varying disturbance. IEEE Trans Control Syst Technol 20(1):48–58
122.
Zurück zum Zitat He W, Ge SS, Hang CC, Hong K-S (2010) Boundary control of a vibrating string under unknown time-varying disturbance. In: The 49th IEEE conference on decision and control, Atlanta, GA, pp 2584–2589 He W, Ge SS, Hang CC, Hong K-S (2010) Boundary control of a vibrating string under unknown time-varying disturbance. In: The 49th IEEE conference on decision and control, Atlanta, GA, pp 2584–2589
123.
Zurück zum Zitat Zhang S, Ge SS, He W, Hong K-S (2011) Modeling and control of a nonuniform vibrating string under spatiotemporally varying tension and disturbance. In: Proceedings of the IFAC world congress, Milano, Italy, pp 7678–7683 Zhang S, Ge SS, He W, Hong K-S (2011) Modeling and control of a nonuniform vibrating string under spatiotemporally varying tension and disturbance. In: Proceedings of the IFAC world congress, Milano, Italy, pp 7678–7683
124.
Zurück zum Zitat Ge SS, He W, Zhang S (2012) Modeling and control of a flexible riser with application to marine installation. In: Proceedings of the 2012 American control conference, Montreal, Canada, pp 664–669 Ge SS, He W, Zhang S (2012) Modeling and control of a flexible riser with application to marine installation. In: Proceedings of the 2012 American control conference, Montreal, Canada, pp 664–669
125.
Zurück zum Zitat He W, Zhang S, Ge SS (2012) Boundary output-feedback stabilization of a Timoshenko beam using disturbance observer. IEEE Trans Ind Electron 60(11):5186–5194 He W, Zhang S, Ge SS (2012) Boundary output-feedback stabilization of a Timoshenko beam using disturbance observer. IEEE Trans Ind Electron 60(11):5186–5194
126.
Zurück zum Zitat Ge SS, Zhang S, He W (2011) Vibration control of a coupled nonlinear string system in transverse and longitudinal directions. In: Proceedings of the 50th IEEE conference on decision and control and European control conference (CDC-ECC), Orlando, FL, vol 1, pp 3742–3747 Ge SS, Zhang S, He W (2011) Vibration control of a coupled nonlinear string system in transverse and longitudinal directions. In: Proceedings of the 50th IEEE conference on decision and control and European control conference (CDC-ECC), Orlando, FL, vol 1, pp 3742–3747
127.
Zurück zum Zitat de Queiroz MS, Rahn CD (2002) Boundary control of vibration and noise in distributed parameter systems: an overview. Mech Syst Signal Process 16:19–38 de Queiroz MS, Rahn CD (2002) Boundary control of vibration and noise in distributed parameter systems: an overview. Mech Syst Signal Process 16:19–38
128.
Zurück zum Zitat Baz A (1997) Dynamic boundary control of beams using active constrained layer damping. Mech Syst Signal Process 11(6):811–825 MathSciNet Baz A (1997) Dynamic boundary control of beams using active constrained layer damping. Mech Syst Signal Process 11(6):811–825 MathSciNet
129.
Zurück zum Zitat Tanaka N, Iwamoto H (2007) Active boundary control of an Euler–Bernoulli beam for generating vibration-free state. J Sound Vib 304:570–586 MathSciNetMATH Tanaka N, Iwamoto H (2007) Active boundary control of an Euler–Bernoulli beam for generating vibration-free state. J Sound Vib 304:570–586 MathSciNetMATH
130.
Zurück zum Zitat Zhang S, He W, Ge SS (2012) Modeling and control of a nonuniform vibrating string under spatiotemporally varying tension and disturbance. IEEE/ASME Trans Mechatron 17(6):1196–1203 Zhang S, He W, Ge SS (2012) Modeling and control of a nonuniform vibrating string under spatiotemporally varying tension and disturbance. IEEE/ASME Trans Mechatron 17(6):1196–1203
131.
Zurück zum Zitat Ge SS, Zhang S, He W (2011) Vibration control of an Euler–Bernoulli beam under unknown spatiotemporally varying disturbance. Int J Control 84(5):947–960 MathSciNetMATH Ge SS, Zhang S, He W (2011) Vibration control of an Euler–Bernoulli beam under unknown spatiotemporally varying disturbance. Int J Control 84(5):947–960 MathSciNetMATH
132.
Zurück zum Zitat He W, Ge SS, Zhang S (2012) Modeling and control design for a multi-cable mooring system. In: Proceedings of the Chinese control conference, Hefei, China, pp 1285–1290 He W, Ge SS, Zhang S (2012) Modeling and control design for a multi-cable mooring system. In: Proceedings of the Chinese control conference, Hefei, China, pp 1285–1290
133.
Zurück zum Zitat Krstic M (2009) Delay compensation for nonlinear, adaptive, and PDE systems. Birkhauser, Boston MATH Krstic M (2009) Delay compensation for nonlinear, adaptive, and PDE systems. Birkhauser, Boston MATH
134.
Zurück zum Zitat Smyshlyaev A, Krstic M (2010) Adaptive control of parabolic PDEs. Princeton University Press, New Jersey MATH Smyshlyaev A, Krstic M (2010) Adaptive control of parabolic PDEs. Princeton University Press, New Jersey MATH
135.
Zurück zum Zitat Vazquez R, Krstic M (2008) Control of 1-d parabolic PDEs with Volterra nonlinearities, part I: design. Automatica 44(11):2778–2790 MathSciNetMATH Vazquez R, Krstic M (2008) Control of 1-d parabolic PDEs with Volterra nonlinearities, part I: design. Automatica 44(11):2778–2790 MathSciNetMATH
136.
Zurück zum Zitat Vazquez R, Krstic M (2008) Control of 1D parabolic PDEs with Volterra nonlinearities, part II: analysis. Automatica 44(11):2791–2803 MathSciNetMATH Vazquez R, Krstic M (2008) Control of 1D parabolic PDEs with Volterra nonlinearities, part II: analysis. Automatica 44(11):2791–2803 MathSciNetMATH
137.
Zurück zum Zitat Krstic M, Siranosian A, Balogh A, Guo B (2007) Control of strings and flexible beams by backstepping boundary control. In: Proceedings of the 2007 American control conference, pp 882–887 Krstic M, Siranosian A, Balogh A, Guo B (2007) Control of strings and flexible beams by backstepping boundary control. In: Proceedings of the 2007 American control conference, pp 882–887
138.
Zurück zum Zitat Krstic M (2008) Optimal adaptive control-contradiction in terms or a matter of choosing the right cost functional? IEEE Trans Autom Control 53(8):1942–1947 MathSciNet Krstic M (2008) Optimal adaptive control-contradiction in terms or a matter of choosing the right cost functional? IEEE Trans Autom Control 53(8):1942–1947 MathSciNet
139.
Zurück zum Zitat Krstic M, Smyshlyaev A (2008) Backstepping boundary control for first-order hyperbolic PDEs and application to systems with actuator and sensor delays. Syst Control Lett 57(9):750–758 MathSciNetMATH Krstic M, Smyshlyaev A (2008) Backstepping boundary control for first-order hyperbolic PDEs and application to systems with actuator and sensor delays. Syst Control Lett 57(9):750–758 MathSciNetMATH
140.
Zurück zum Zitat Smyshlyaev A, Guo B, Krstic M (2009) Arbitrary decay rate for Euler-Bernoulli beam by backstepping boundary feedback. IEEE Trans Autom Control 54(5):1135 MathSciNet Smyshlyaev A, Guo B, Krstic M (2009) Arbitrary decay rate for Euler-Bernoulli beam by backstepping boundary feedback. IEEE Trans Autom Control 54(5):1135 MathSciNet
141.
Zurück zum Zitat Krstic M, Smyshlyaev A (2008) Adaptive control of PDEs. Annu Rev Control 32(2):149–160 MathSciNet Krstic M, Smyshlyaev A (2008) Adaptive control of PDEs. Annu Rev Control 32(2):149–160 MathSciNet
142.
Zurück zum Zitat Krstic M, Smyshlyaev A (2008) Adaptive boundary control for unstable parabolic PDEs, part I: Lyapunov design. IEEE Trans Autom Control 53(7):1575 MathSciNet Krstic M, Smyshlyaev A (2008) Adaptive boundary control for unstable parabolic PDEs, part I: Lyapunov design. IEEE Trans Autom Control 53(7):1575 MathSciNet
143.
Zurück zum Zitat Smyshlyaev A, Krstic M (2007) Adaptive boundary control for unstable parabolic PDEs, part II: estimation-based designs. Automatica 43(9):1543–1556 MathSciNetMATH Smyshlyaev A, Krstic M (2007) Adaptive boundary control for unstable parabolic PDEs, part II: estimation-based designs. Automatica 43(9):1543–1556 MathSciNetMATH
144.
Zurück zum Zitat Smyshlyaev A, Krstic M (2007) Adaptive boundary control for unstable parabolic PDEs, part III: output feedback examples with swapping identifiers. Automatica 43(9):1557–1564 MathSciNetMATH Smyshlyaev A, Krstic M (2007) Adaptive boundary control for unstable parabolic PDEs, part III: output feedback examples with swapping identifiers. Automatica 43(9):1557–1564 MathSciNetMATH
145.
Zurück zum Zitat Guo B, Guo W (2009) The strong stabilization of a one-dimensional wave equation by non-collocated dynamic boundary feedback control. Automatica 45(3):790–797 MathSciNetMATH Guo B, Guo W (2009) The strong stabilization of a one-dimensional wave equation by non-collocated dynamic boundary feedback control. Automatica 45(3):790–797 MathSciNetMATH
146.
Zurück zum Zitat Huang D, Xu J-X (2011) Steady-state iterative learning control for a class of nonlinear pde processes. J Process Control 21(8):1155–1163 Huang D, Xu J-X (2011) Steady-state iterative learning control for a class of nonlinear pde processes. J Process Control 21(8):1155–1163
147.
Zurück zum Zitat Luo Z, Guo B-Z, Morgul O (1999) Stability and stabilization of infinite dimensional systems with applications. Springer, London MATH Luo Z, Guo B-Z, Morgul O (1999) Stability and stabilization of infinite dimensional systems with applications. Springer, London MATH
148.
Zurück zum Zitat Sakawa Y, Luo Z (1989) Modeling and control of coupled bending and torsional vibrations of flexible beams. IEEE Trans Autom Control 34(9):970–977 MathSciNetMATH Sakawa Y, Luo Z (1989) Modeling and control of coupled bending and torsional vibrations of flexible beams. IEEE Trans Autom Control 34(9):970–977 MathSciNetMATH
149.
Zurück zum Zitat Luo Z (1993) Direct strain feedback control of flexible robot arms: new theoretical and experimental results. IEEE Trans Autom Control 38(11):1610–1622 MATH Luo Z (1993) Direct strain feedback control of flexible robot arms: new theoretical and experimental results. IEEE Trans Autom Control 38(11):1610–1622 MATH
150.
Zurück zum Zitat Luo Z, Guo B-Z (1995) Further theoretical results on direct strain feedback control of flexible robot arms. IEEE Trans Autom Control 40(4):747–751 MathSciNetMATH Luo Z, Guo B-Z (1995) Further theoretical results on direct strain feedback control of flexible robot arms. IEEE Trans Autom Control 40(4):747–751 MathSciNetMATH
151.
Zurück zum Zitat Luo Z, Kitamura N, Guo B-Z (1995) Shear force feedback control of flexible robot arms. IEEE Trans Robot Autom 11(5):760–765 Luo Z, Kitamura N, Guo B-Z (1995) Shear force feedback control of flexible robot arms. IEEE Trans Robot Autom 11(5):760–765
152.
Zurück zum Zitat Guo B-Z, Shao Z-C (2009) Stabilization of an abstract second order system with application to wave equations under non-collocated control and observations. Syst Control Lett 58(5):334–341 MathSciNetMATH Guo B-Z, Shao Z-C (2009) Stabilization of an abstract second order system with application to wave equations under non-collocated control and observations. Syst Control Lett 58(5):334–341 MathSciNetMATH
153.
Zurück zum Zitat Guo B-Z, Xu C-Z (2007) The stabilization of a one-dimensional wave equation by boundary feedback with noncollocated observation. IEEE Trans Autom Control 52(2):371–377 MathSciNet Guo B-Z, Xu C-Z (2007) The stabilization of a one-dimensional wave equation by boundary feedback with noncollocated observation. IEEE Trans Autom Control 52(2):371–377 MathSciNet
154.
Zurück zum Zitat Nguyen TD (2008) Second-order observers for second-order distributed parameter systems in R 2. Syst Control Lett 57(10):787–795 MATH Nguyen TD (2008) Second-order observers for second-order distributed parameter systems in R 2. Syst Control Lett 57(10):787–795 MATH
155.
Zurück zum Zitat Nguyen TD (2009) Boundary output feedback of second-order distributed parameter systems. Syst Control Lett 58(7):519–528 MATH Nguyen TD (2009) Boundary output feedback of second-order distributed parameter systems. Syst Control Lett 58(7):519–528 MATH
156.
Zurück zum Zitat Curtain R, Zwart H (1995) An introduction to infinite-dimensional linear systems theory. Springer, New York MATH Curtain R, Zwart H (1995) An introduction to infinite-dimensional linear systems theory. Springer, New York MATH
157.
Zurück zum Zitat Pazy A (1983) Semigroups of linear operators and applications to partial differential equations. Springer, New York MATH Pazy A (1983) Semigroups of linear operators and applications to partial differential equations. Springer, New York MATH
158.
Zurück zum Zitat Bensoussan A, Prato G, Delfour M, Mitter S (2007) Representation and control of infinite dimensional systems MATH Bensoussan A, Prato G, Delfour M, Mitter S (2007) Representation and control of infinite dimensional systems MATH
159.
Zurück zum Zitat Guo B-Z, Jin F-F (2010) Arbitrary decay rate for two connected strings with joint anti-damping by boundary output feedback. Automatica 46(7):1203–1209 MathSciNetMATH Guo B-Z, Jin F-F (2010) Arbitrary decay rate for two connected strings with joint anti-damping by boundary output feedback. Automatica 46(7):1203–1209 MathSciNetMATH
160.
Zurück zum Zitat Suzuki H, Tao Q, Yoshida K (1998) Automatic installation of underwater elastic structures under unknown currents. In: Proceedings of the international symposium on underwater technology, vol 14, pp 274–281 Suzuki H, Tao Q, Yoshida K (1998) Automatic installation of underwater elastic structures under unknown currents. In: Proceedings of the international symposium on underwater technology, vol 14, pp 274–281
161.
Zurück zum Zitat Watanabe K, Suzuki H, Tao Q, Yoshida K (1998) Basis research on underwater docking of flexible structures. In: IEEE international conference on robotics and automation, pp 458–463 Watanabe K, Suzuki H, Tao Q, Yoshida K (1998) Basis research on underwater docking of flexible structures. In: IEEE international conference on robotics and automation, pp 458–463
162.
Zurück zum Zitat Hover F (1993) Experiments in dynamic positioning of a towed pipe. In: Proceedings of engineering in harmony with the ocean. IEEE, New York, pp 484–490 Hover F (1993) Experiments in dynamic positioning of a towed pipe. In: Proceedings of engineering in harmony with the ocean. IEEE, New York, pp 484–490
163.
Zurück zum Zitat Cybenko G (1989) Approximation by superpositions of a sigmoidal function. Math Control Signals Syst 2(4):303–314 MathSciNetMATH Cybenko G (1989) Approximation by superpositions of a sigmoidal function. Math Control Signals Syst 2(4):303–314 MathSciNetMATH
164.
165.
Zurück zum Zitat Funahashi K (1989) On the approximate realization of continuous mappings by neural networks. Neural Netw 2(3):183–192 Funahashi K (1989) On the approximate realization of continuous mappings by neural networks. Neural Netw 2(3):183–192
166.
Zurück zum Zitat Hornik K, Stinchcombe M, White H (1989) Multilayer feedforward networks are universal approximators. Neural Netw 2:359–366 Hornik K, Stinchcombe M, White H (1989) Multilayer feedforward networks are universal approximators. Neural Netw 2:359–366
167.
Zurück zum Zitat Cherkassky V, Gehring D, Mulier F (1996) Comparison of adaptive methods for function estimation from samples. IEEE Trans Neural Netw 7(4):969–984 Cherkassky V, Gehring D, Mulier F (1996) Comparison of adaptive methods for function estimation from samples. IEEE Trans Neural Netw 7(4):969–984
168.
Zurück zum Zitat Wang C, Ge S (2001) Adaptive backstepping control of uncertain Lorenz system. Int J Bifurc Chaos Appl Sci Eng 11(4):1115–1120 MathSciNetMATH Wang C, Ge S (2001) Adaptive backstepping control of uncertain Lorenz system. Int J Bifurc Chaos Appl Sci Eng 11(4):1115–1120 MathSciNetMATH
169.
Zurück zum Zitat Moraal P, Grizzle J (1995) Observer design for nonlinear systems with discrete-time measurements. IEEE Trans Autom Control 40(3):395–404 MathSciNetMATH Moraal P, Grizzle J (1995) Observer design for nonlinear systems with discrete-time measurements. IEEE Trans Autom Control 40(3):395–404 MathSciNetMATH
170.
Zurück zum Zitat Dabroom A, Khalil H (2001) Output feedback sampled-data control of nonlinear systems using high-gain observers. IEEE Trans Autom Control 46(11):1712–1725 MathSciNetMATH Dabroom A, Khalil H (2001) Output feedback sampled-data control of nonlinear systems using high-gain observers. IEEE Trans Autom Control 46(11):1712–1725 MathSciNetMATH
171.
Zurück zum Zitat Lewis FL, Jagannathan S, Yeşildirek A (1999) Neural network control of robot manipulators and nonlinear systems. CRC, Boca Raton Lewis FL, Jagannathan S, Yeşildirek A (1999) Neural network control of robot manipulators and nonlinear systems. CRC, Boca Raton
172.
Zurück zum Zitat Vemuri A, Polycarpou M (1997) Neural-network-based robust fault diagnosis in robotic systems. IEEE Trans Neural Netw 8(6):1410–1420 Vemuri A, Polycarpou M (1997) Neural-network-based robust fault diagnosis in robotic systems. IEEE Trans Neural Netw 8(6):1410–1420
173.
Zurück zum Zitat Vemuri A, Polycarpou M, Diakourtis S (1998) Neural network based fault detection in robotic manipulators. IEEE Trans Robot Autom 14(2):342–348 Vemuri A, Polycarpou M, Diakourtis S (1998) Neural network based fault detection in robotic manipulators. IEEE Trans Robot Autom 14(2):342–348
174.
Zurück zum Zitat Chen FC, Liu CC (1994) Adaptively controlling nonlinear continuous-time systems using multilayer neural networks. IEEE Trans Autom Control 39(6):1206–1310 Chen FC, Liu CC (1994) Adaptively controlling nonlinear continuous-time systems using multilayer neural networks. IEEE Trans Autom Control 39(6):1206–1310
175.
Zurück zum Zitat Ge SS, Lee TH, Ren SX (2001) Adaptive friction compensation of servo mechanisms. Fuzzy Sets Syst 32(4):523–532 MATH Ge SS, Lee TH, Ren SX (2001) Adaptive friction compensation of servo mechanisms. Fuzzy Sets Syst 32(4):523–532 MATH
176.
Zurück zum Zitat Tan KK, Huang SN, Lee TH (2004) Adaptive backstepping control for a class of nonlinear systems using neural network approximations. Int J Robust Nonlinear Control 14:643–664 MathSciNetMATH Tan KK, Huang SN, Lee TH (2004) Adaptive backstepping control for a class of nonlinear systems using neural network approximations. Int J Robust Nonlinear Control 14:643–664 MathSciNetMATH
177.
Zurück zum Zitat Narendra KS, Parthasarathy K (1990) Identification and control of dynamic systems using neural networks. IEEE Trans Neural Netw 1(1):4–27 Narendra KS, Parthasarathy K (1990) Identification and control of dynamic systems using neural networks. IEEE Trans Neural Netw 1(1):4–27
178.
Zurück zum Zitat Levin AU, Narendra KS (1996) Control of nonlinear dynamical systems using neural networks, part II: observability, identification, and control. IEEE Trans Neural Netw 7(1):30–42 Levin AU, Narendra KS (1996) Control of nonlinear dynamical systems using neural networks, part II: observability, identification, and control. IEEE Trans Neural Netw 7(1):30–42
179.
Zurück zum Zitat Lewis FL, Jagannathan S, Yeildirek A (1999) Neural network control of robot manipulators and nonlinear systems Lewis FL, Jagannathan S, Yeildirek A (1999) Neural network control of robot manipulators and nonlinear systems
180.
Zurück zum Zitat Ge SS, Hang CC, Zhang T (1998) Nonlinear adaptive control using neural network and its application to CSTR systems. J Process Control 9:313–323 Ge SS, Hang CC, Zhang T (1998) Nonlinear adaptive control using neural network and its application to CSTR systems. J Process Control 9:313–323
181.
Zurück zum Zitat Zhang T, Ge SS, Hang CC (1999) Design and performance analysis of a direct adaptive controller for nonlinear systems. Automatica 35:1809–1817 MathSciNetMATH Zhang T, Ge SS, Hang CC (1999) Design and performance analysis of a direct adaptive controller for nonlinear systems. Automatica 35:1809–1817 MathSciNetMATH
182.
Zurück zum Zitat Tee KP, Ge SS (2006) Control of fully actuated ocean surface vessels using a class of feedforward approximators. IEEE Trans Control Syst Technol 14(4):750–756 Tee KP, Ge SS (2006) Control of fully actuated ocean surface vessels using a class of feedforward approximators. IEEE Trans Control Syst Technol 14(4):750–756
183.
Zurück zum Zitat Chen M, Ge SS, Ren B (2011) Adaptive tracking control of uncertain mimo nonlinear systems with input constraints. Automatica 47(3):452–465 MathSciNetMATH Chen M, Ge SS, Ren B (2011) Adaptive tracking control of uncertain mimo nonlinear systems with input constraints. Automatica 47(3):452–465 MathSciNetMATH
184.
Zurück zum Zitat Ren B, Ge SS, Tee KP, Lee TH (2010) Adaptive neural control for output feedback nonlinear systems using a barrier Lyapunov function. IEEE Trans Neural Netw 21(8):1339–1345 Ren B, Ge SS, Tee KP, Lee TH (2010) Adaptive neural control for output feedback nonlinear systems using a barrier Lyapunov function. IEEE Trans Neural Netw 21(8):1339–1345
185.
Zurück zum Zitat Wang M, Liu X, Shi P (2011) Adaptive neural control of pure-feedback nonlinear time-delay systems via dynamic surface technique. IEEE Trans Syst Man Cybern, Part B, Cybern 41(6):1681 Wang M, Liu X, Shi P (2011) Adaptive neural control of pure-feedback nonlinear time-delay systems via dynamic surface technique. IEEE Trans Syst Man Cybern, Part B, Cybern 41(6):1681
186.
Zurück zum Zitat Wang C, Hill D (2006) Learning from neural control. IEEE Trans Neural Netw 17(1):130–146 Wang C, Hill D (2006) Learning from neural control. IEEE Trans Neural Netw 17(1):130–146
187.
Zurück zum Zitat Ge SS, Wang C (2002) Direct adaptive nn control of a class of nonlinear systems. IEEE Trans Neural Netw 13(1):214–221 MathSciNet Ge SS, Wang C (2002) Direct adaptive nn control of a class of nonlinear systems. IEEE Trans Neural Netw 13(1):214–221 MathSciNet
188.
Zurück zum Zitat Ge SS, Wang C (2004) Adaptive neural control of uncertain mimo nonlinear systems. IEEE Trans Neural Netw 15(3):674–692 Ge SS, Wang C (2004) Adaptive neural control of uncertain mimo nonlinear systems. IEEE Trans Neural Netw 15(3):674–692
189.
Zurück zum Zitat Zhang T, Ge SS (2007) Adaptive neural control of mimo nonlinear state time-varying delay systems with unknown dead-zones and gain signs. Automatica 43(6):1021–1033 MathSciNetMATH Zhang T, Ge SS (2007) Adaptive neural control of mimo nonlinear state time-varying delay systems with unknown dead-zones and gain signs. Automatica 43(6):1021–1033 MathSciNetMATH
190.
Zurück zum Zitat Yang C, Ge SS, Xiang C, Chai T, Lee TH (2008) Output feedback nn control for two classes of discrete-time systems with unknown control directions in a unified approach. IEEE Trans Neural Netw 19(11):1873–1886 Yang C, Ge SS, Xiang C, Chai T, Lee TH (2008) Output feedback nn control for two classes of discrete-time systems with unknown control directions in a unified approach. IEEE Trans Neural Netw 19(11):1873–1886
191.
Zurück zum Zitat Li Y, Qiang S, Zhuang X, Kaynak O (2004) Robust and adaptive backstepping control for nonlinear systems using RBF neural networks. IEEE Trans Neural Netw 15(3):693–701 Li Y, Qiang S, Zhuang X, Kaynak O (2004) Robust and adaptive backstepping control for nonlinear systems using RBF neural networks. IEEE Trans Neural Netw 15(3):693–701
192.
Zurück zum Zitat Kayacan E, Cigdem O, Kaynak O (2012) Sliding mode control approach for online learning as applied to type-2 fuzzy neural networks and its experimental evaluation. IEEE Trans Ind Electron 59(9):3510–3520 Kayacan E, Cigdem O, Kaynak O (2012) Sliding mode control approach for online learning as applied to type-2 fuzzy neural networks and its experimental evaluation. IEEE Trans Ind Electron 59(9):3510–3520
Metadaten
Titel
Introduction
verfasst von
Wei He
Shuzhi Sam Ge
Bernard Voon Ee How
Yoo Sang Choo
Copyright-Jahr
2014
Verlag
Springer London
DOI
https://doi.org/10.1007/978-1-4471-5337-5_1

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