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Erschienen in: Meccanica 11-12/2017

28.12.2016

Control of nonlinear vibrations using the adjoint method

verfasst von: Carmine M. Pappalardo, Domenico Guida

Erschienen in: Meccanica | Ausgabe 11-12/2017

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Abstract

In this paper, a new methodology is proposed to address the problems of suppressing structural vibrations and attenuating contact forces in nonlinear mechanical systems. The computational algorithms developed in this work are based on the mathematical framework of the calculus of variation and take advantage of the numerical implementation of the adjoint method. To this end, the principal aspects of the optimal control theory are reviewed and employed to derive the adjoint equations which form a nonlinear differential-algebraic two-point boundary value problem that defines the mathematical solution of the optimal control problem. The adjoint equations are obtained and solved numerically for the optimal design of control strategies considering a twofold control structure: a feedforward (open-loop) control architecture and a feedback (closed-loop) control scheme. While the feedforward control strategy can be implemented using only the active control paradigm, the feedback control method can be realized employing both the active and the passive control approaches. For this purpose, two dual numerical procedures are developed to numerically compute a set of optimal control policies, namely the adjoint-based control optimization method for feedforward control actions and the adjoint-based parameter optimization method for feedback control actions. The computational methods developed in this work are suitable for controlling nonlinear nonautonomous dynamical systems and feature a broad scope of application. In particular, it is shown in this paper that by setting an appropriate mathematical form of the cost functional, the proposed methods allow for simultaneously solving the problems of suppressing vibrations and attenuating interaction forces for a general class of nonlinear mechanical systems. The numerical example described in the paper illustrates the key features of the adjoint method and demonstrates the feasibility and the effectiveness of the proposed adjoint-based computational procedures.

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Literatur
2.
Zurück zum Zitat Khalil HK (2001) Nonlinear systems, 3rd edn. Prentice Hall, Upper Saddle River Khalil HK (2001) Nonlinear systems, 3rd edn. Prentice Hall, Upper Saddle River
3.
Zurück zum Zitat Antman SS (2005) Nonlinear problems of elasticity, 2nd edn. Springer, New YorkMATH Antman SS (2005) Nonlinear problems of elasticity, 2nd edn. Springer, New YorkMATH
4.
Zurück zum Zitat Meirovitch L (2010) Fundamentals of vibrations. McGraw Hill, Boston Meirovitch L (2010) Fundamentals of vibrations. McGraw Hill, Boston
5.
Zurück zum Zitat Hagedorn P, DasGupta A (2007) Vibrations and waves in continuous mechanical systems. Wiley, ChichesterMATHCrossRef Hagedorn P, DasGupta A (2007) Vibrations and waves in continuous mechanical systems. Wiley, ChichesterMATHCrossRef
6.
Zurück zum Zitat Preumont A (2011) Vibration control of active structures: an introduction, 3rd edn. Springer, BerlinMATHCrossRef Preumont A (2011) Vibration control of active structures: an introduction, 3rd edn. Springer, BerlinMATHCrossRef
7.
Zurück zum Zitat Bauchau OA, Craig JI (2009) Structural analysis: with applications to aerospace structures. Springer, New YorkCrossRef Bauchau OA, Craig JI (2009) Structural analysis: with applications to aerospace structures. Springer, New YorkCrossRef
8.
Zurück zum Zitat Hodges DH, Pierce GA (2002) Introduction to structural dynamics and aeroelasticity. Cambridge University Press, CambridgeCrossRef Hodges DH, Pierce GA (2002) Introduction to structural dynamics and aeroelasticity. Cambridge University Press, CambridgeCrossRef
10.
11.
Zurück zum Zitat Slotine JE, Li W (1991) Applied nonlinear control. Prentice Hall, Englewood CliffsMATH Slotine JE, Li W (1991) Applied nonlinear control. Prentice Hall, Englewood CliffsMATH
12.
13.
Zurück zum Zitat Gawronski WK (2004) Advanced structural dynamics and active control of structures. Springer, New YorkMATHCrossRef Gawronski WK (2004) Advanced structural dynamics and active control of structures. Springer, New YorkMATHCrossRef
14.
Zurück zum Zitat Skelton RE, de Oliveira MC (2009) Tensegrity systems. Springer, New YorkMATH Skelton RE, de Oliveira MC (2009) Tensegrity systems. Springer, New YorkMATH
15.
Zurück zum Zitat Juang JN, Phan MQ (2004) Identification and control of mechanical systems. Cambridge University Press, Cambridge Juang JN, Phan MQ (2004) Identification and control of mechanical systems. Cambridge University Press, Cambridge
16.
Zurück zum Zitat Seifried R (2014) Dynamics of underactuated multibody systems: modeling, control and optimal design. Springer, LondonMATHCrossRef Seifried R (2014) Dynamics of underactuated multibody systems: modeling, control and optimal design. Springer, LondonMATHCrossRef
17.
Zurück zum Zitat Zhong WX (2004) Duality system in applied mechanics and optimal control. Kluwer Academic Publishers, New YorkMATH Zhong WX (2004) Duality system in applied mechanics and optimal control. Kluwer Academic Publishers, New YorkMATH
18.
Zurück zum Zitat Inman DJ (2008) Engineering vibration, 3rd edn. Prentice Hall, Upper Saddle River Inman DJ (2008) Engineering vibration, 3rd edn. Prentice Hall, Upper Saddle River
19.
Zurück zum Zitat Al Majid A, Dufour R (2002) Formulation of a hysteretic restoring force model: application to vibration isolation. J Nonlinear Dyn 27:69–85MATHCrossRef Al Majid A, Dufour R (2002) Formulation of a hysteretic restoring force model: application to vibration isolation. J Nonlinear Dyn 27:69–85MATHCrossRef
20.
Zurück zum Zitat Ashour ON, Nayfeh AH (2002) Adaptive control of flexible structures using a nonlinear vibration absorber. J Nonlinear Dyn 28:309–322MATHCrossRef Ashour ON, Nayfeh AH (2002) Adaptive control of flexible structures using a nonlinear vibration absorber. J Nonlinear Dyn 28:309–322MATHCrossRef
21.
Zurück zum Zitat Siciliano B, Sciavicco L, Villani L, Oriolo G (2010) Robotics: modelling, planning and control. Springer, London Siciliano B, Sciavicco L, Villani L, Oriolo G (2010) Robotics: modelling, planning and control. Springer, London
22.
Zurück zum Zitat Bryson AE, Ho YC (1975) Applied optimal control: optimization, estimation and control. Taylor and Francis, New York Bryson AE, Ho YC (1975) Applied optimal control: optimization, estimation and control. Taylor and Francis, New York
23.
24.
Zurück zum Zitat Luchini P, Bottaro A (2014) Adjoint equations in stability analysis. Annu Rev Fluid Mech 46:1–30MATHCrossRef Luchini P, Bottaro A (2014) Adjoint equations in stability analysis. Annu Rev Fluid Mech 46:1–30MATHCrossRef
25.
Zurück zum Zitat Bewley TR (2015) Numerical renaissance: simulation, optimization and control. Renaissance Press, To be published Bewley TR (2015) Numerical renaissance: simulation, optimization and control. Renaissance Press, To be published
26.
Zurück zum Zitat Bertsekas DP (2005) Dynamic programming and optimal control—volume 1. Athena Scientific, BelmontMATH Bertsekas DP (2005) Dynamic programming and optimal control—volume 1. Athena Scientific, BelmontMATH
27.
Zurück zum Zitat Bertsekas DP (2005) Dynamic programming and optimal control—volume II. Athena Scientific, BelmontMATH Bertsekas DP (2005) Dynamic programming and optimal control—volume II. Athena Scientific, BelmontMATH
28.
Zurück zum Zitat Bellman RE, Dreyfus SE (1962) Applied dynamic programming. Oxford University Press, LondonMATHCrossRef Bellman RE, Dreyfus SE (1962) Applied dynamic programming. Oxford University Press, LondonMATHCrossRef
29.
Zurück zum Zitat Bewley TR (2001) Flow control: new challenges for a new eenaissance. Prog Aerosp Sci 37:21–58CrossRef Bewley TR (2001) Flow control: new challenges for a new eenaissance. Prog Aerosp Sci 37:21–58CrossRef
31.
Zurück zum Zitat Giles MB, Pierce NA (2000) An introduction to the adjoint approach to design. J Flow Turbul Combust 65:393–415MATHCrossRef Giles MB, Pierce NA (2000) An introduction to the adjoint approach to design. J Flow Turbul Combust 65:393–415MATHCrossRef
33.
Zurück zum Zitat Giannetti F, Camarri S, Luchini P (2010) Structural sensitivity of the secondary instability in the wake of a circular cylinder. J Fluid Mech 651:319–337ADSMathSciNetMATHCrossRef Giannetti F, Camarri S, Luchini P (2010) Structural sensitivity of the secondary instability in the wake of a circular cylinder. J Fluid Mech 651:319–337ADSMathSciNetMATHCrossRef
34.
Zurück zum Zitat Luchini P, Bewley TR (2010) Methods for the solution of very large flow-control problems that bypass open-loop model reduction. Bull Am Phys Soc 55–16:42–42 Luchini P, Bewley TR (2010) Methods for the solution of very large flow-control problems that bypass open-loop model reduction. Bull Am Phys Soc 55–16:42–42
35.
Zurück zum Zitat Schmidt-Wetekam C, Zhang D, Hughes R, Bewley TR (2007) Design, optimization, and control of a new class of reconfigurable hopping rovers. In: Proceedings of the 46th IEEE conference on decision and control New Orleans, December 12–14 Schmidt-Wetekam C, Zhang D, Hughes R, Bewley TR (2007) Design, optimization, and control of a new class of reconfigurable hopping rovers. In: Proceedings of the 46th IEEE conference on decision and control New Orleans, December 12–14
36.
Zurück zum Zitat Summers S, Bewley TR (2007) MPDopt: a versatile toolbox for adjoint-based model predictive control of smooth and switched nonlinear dynamic systems. In: Proceedings of the 46th IEEE conference on decision and control New Orleans, December 12–14 Summers S, Bewley TR (2007) MPDopt: a versatile toolbox for adjoint-based model predictive control of smooth and switched nonlinear dynamic systems. In: Proceedings of the 46th IEEE conference on decision and control New Orleans, December 12–14
37.
Zurück zum Zitat Bewley TR, Temam R, Zianed M (2000) A general framework for robust control in fluid mechanics. Phys D Nonlinear Phenom 138(3–4):360–392ADSMathSciNetMATHCrossRef Bewley TR, Temam R, Zianed M (2000) A general framework for robust control in fluid mechanics. Phys D Nonlinear Phenom 138(3–4):360–392ADSMathSciNetMATHCrossRef
38.
Zurück zum Zitat Raibert MH, Craig JJ (1981) Hybrid position-force control of manipulators. J Dyn Syst Meas Control 103(2):126–133CrossRef Raibert MH, Craig JJ (1981) Hybrid position-force control of manipulators. J Dyn Syst Meas Control 103(2):126–133CrossRef
39.
Zurück zum Zitat Gorinevsky D, Formalsky A, Schneider A (1997) Force control of robotics systems. CRC Press, Boca RatonMATH Gorinevsky D, Formalsky A, Schneider A (1997) Force control of robotics systems. CRC Press, Boca RatonMATH
40.
Zurück zum Zitat Spong MW, Hutchinson S, Vidyasagar M (2005) Robot modeling and control. Wiley, New York Spong MW, Hutchinson S, Vidyasagar M (2005) Robot modeling and control. Wiley, New York
41.
Zurück zum Zitat Lewis FL, Dawson DM, Abdallah CT (2003) Robot manipulator control: theory and practice. CRC Press, Boca RatonCrossRef Lewis FL, Dawson DM, Abdallah CT (2003) Robot manipulator control: theory and practice. CRC Press, Boca RatonCrossRef
42.
Zurück zum Zitat Guida D, Pappalardo CM (2015) Control design of an active suspension system for a quarter-car model with hysteresis. J Vib Eng Technol 3(3):277–299 Guida D, Pappalardo CM (2015) Control design of an active suspension system for a quarter-car model with hysteresis. J Vib Eng Technol 3(3):277–299
43.
Zurück zum Zitat Guida D, Pappalardo CM (2013) Development of a closed-chain multibody model of a high-speed railway pantograph for hybrid motion/force control of the pantograph/catenary interaction. J Mech Eng Ind Des 3(5):45–85 Guida D, Pappalardo CM (2013) Development of a closed-chain multibody model of a high-speed railway pantograph for hybrid motion/force control of the pantograph/catenary interaction. J Mech Eng Ind Des 3(5):45–85
44.
Zurück zum Zitat Ogata K (2010) Modern control engineering, 5th edn. Prentice Hall, BostonMATH Ogata K (2010) Modern control engineering, 5th edn. Prentice Hall, BostonMATH
45.
Zurück zum Zitat Guida D, Pappalardo CM (2013) Swing-up and stabilization of an inverted pendulum with dry friction. J Mech Eng Ind Des 2(5):40–56 Guida D, Pappalardo CM (2013) Swing-up and stabilization of an inverted pendulum with dry friction. J Mech Eng Ind Des 2(5):40–56
46.
Zurück zum Zitat Vincent TL, Grantham JW (1997) Nonlinear and optimal control systems. Wiley, New York Vincent TL, Grantham JW (1997) Nonlinear and optimal control systems. Wiley, New York
47.
Zurück zum Zitat Betts JT (2010) Practical methods for optimal control and estimation using nonlinear programming, 2nd edn. Siam, PhiladelphiaMATHCrossRef Betts JT (2010) Practical methods for optimal control and estimation using nonlinear programming, 2nd edn. Siam, PhiladelphiaMATHCrossRef
48.
Zurück zum Zitat Clarke F (2013) Functional analysis, calculus of variation and optimal control. Springer, LondonMATHCrossRef Clarke F (2013) Functional analysis, calculus of variation and optimal control. Springer, LondonMATHCrossRef
49.
Zurück zum Zitat Stengel RF (1986) Optimal control and estimation. Dover, New YorkMATH Stengel RF (1986) Optimal control and estimation. Dover, New YorkMATH
50.
Zurück zum Zitat Bement MT, Bewley TR (2008) Excitation design for damage detection using iterative adjoint-based optimization—Part 1: method development. Mech Syst Signal Process 23:783–793ADSCrossRef Bement MT, Bewley TR (2008) Excitation design for damage detection using iterative adjoint-based optimization—Part 1: method development. Mech Syst Signal Process 23:783–793ADSCrossRef
51.
Zurück zum Zitat Nise NS (2011) Control system engineering, 6th edn. Wiley, New YorkMATH Nise NS (2011) Control system engineering, 6th edn. Wiley, New YorkMATH
52.
Zurück zum Zitat Troutman JL (1995) Variational calculus and optimal control: optimization with elementary convexity, 2nd edn. Springer, New YorkMATH Troutman JL (1995) Variational calculus and optimal control: optimization with elementary convexity, 2nd edn. Springer, New YorkMATH
53.
Zurück zum Zitat Liberzon D (2012) Calculus of variations and optimal control theory: a concise introduction. Princeton University Press, PrincetonMATH Liberzon D (2012) Calculus of variations and optimal control theory: a concise introduction. Princeton University Press, PrincetonMATH
54.
55.
Zurück zum Zitat Bement MT, Bewley TR (2008) Excitation design for damage detection using iterative adjoint-based optimization—Part 2: experimental demonstration. Mech Syst Signal Process 23:794–803ADSCrossRef Bement MT, Bewley TR (2008) Excitation design for damage detection using iterative adjoint-based optimization—Part 2: experimental demonstration. Mech Syst Signal Process 23:794–803ADSCrossRef
56.
Zurück zum Zitat Kirk DE (1970) Optimal control theory: an introduction. Dover, Mineola Kirk DE (1970) Optimal control theory: an introduction. Dover, Mineola
57.
Zurück zum Zitat Guida D, Pappalardo CM (2013) Optimal control design of an active mass damper with dry friction. J Mech Eng Ind Des 2(4):27–39 Guida D, Pappalardo CM (2013) Optimal control design of an active mass damper with dry friction. J Mech Eng Ind Des 2(4):27–39
58.
Zurück zum Zitat Press WH, Teukolsky SA, Vetterling WT, Flannery BP (2007) Numerical recipes: the art of scientific computing, 3rd edn. Cambridge University Press, CambridgeMATH Press WH, Teukolsky SA, Vetterling WT, Flannery BP (2007) Numerical recipes: the art of scientific computing, 3rd edn. Cambridge University Press, CambridgeMATH
59.
Zurück zum Zitat Guida D, Pappalardo CM (2013) A new method for control law design of a quarter-car suspension system. J Mech Eng Ind Des 1(5):37–58 Guida D, Pappalardo CM (2013) A new method for control law design of a quarter-car suspension system. J Mech Eng Ind Des 1(5):37–58
60.
Zurück zum Zitat Snyman JA (2005) Practical mathematical optimization: an introduction to basic optimization theory and classical and new gradient-based algorithms. Springer, New YorkMATH Snyman JA (2005) Practical mathematical optimization: an introduction to basic optimization theory and classical and new gradient-based algorithms. Springer, New YorkMATH
61.
Zurück zum Zitat Shabana AA (2013) Dynamics of multibody systems, Forth edn. Cambridge University Press, CambridgeMATHCrossRef Shabana AA (2013) Dynamics of multibody systems, Forth edn. Cambridge University Press, CambridgeMATHCrossRef
62.
Zurück zum Zitat Meirovitch L (2010) Methods of analytical dynamics. Dover, MineolaMATH Meirovitch L (2010) Methods of analytical dynamics. Dover, MineolaMATH
63.
Zurück zum Zitat Lanczos C (1986) The bariational principles of mechanics, 4th edn. Dover, MineolaMATH Lanczos C (1986) The bariational principles of mechanics, 4th edn. Dover, MineolaMATH
64.
Zurück zum Zitat Goldstein H, Poole CP, Safko JL (2013) Classical mechanics, 3rd edn. Addison Wesley, San FranciscoMATH Goldstein H, Poole CP, Safko JL (2013) Classical mechanics, 3rd edn. Addison Wesley, San FranciscoMATH
65.
Zurück zum Zitat Fantoni I, Lozano R (2001) Non-linear control for underactuated mechanical systems. Springer, LondonMATH Fantoni I, Lozano R (2001) Non-linear control for underactuated mechanical systems. Springer, LondonMATH
66.
67.
Zurück zum Zitat Pappalardo CM (2015) A natural absolute coordinate formulation for the kinematic and dynamic analysis of rigid multibody systems. J Nonlinear Dyn 81(4):1841–1869MathSciNetMATHCrossRef Pappalardo CM (2015) A natural absolute coordinate formulation for the kinematic and dynamic analysis of rigid multibody systems. J Nonlinear Dyn 81(4):1841–1869MathSciNetMATHCrossRef
68.
Zurück zum Zitat Pappalardo CM, Patel MD, Tinsley B, Shabana AA (2015) Contact force control in multibody pantograph/catenary systems. In: Proceedings of the institution of mechanical engineers, Part K: journal of multibody dynamics, pp 1–22 Pappalardo CM, Patel MD, Tinsley B, Shabana AA (2015) Contact force control in multibody pantograph/catenary systems. In: Proceedings of the institution of mechanical engineers, Part K: journal of multibody dynamics, pp 1–22
69.
Zurück zum Zitat Pappalardo CM, Yu Z, Zhang X, Shabana AA (2015) Rational ANCF thin plate finite element. J Comput Nonlinear Dyn 11(5):1–15 Pappalardo CM, Yu Z, Zhang X, Shabana AA (2015) Rational ANCF thin plate finite element. J Comput Nonlinear Dyn 11(5):1–15
70.
Zurück zum Zitat Kulkarni S, Pappalardo CM, Shabana AA (2017) Pantograph/catenary contact formulations. ASME J Vib Acoust 139(1):1–12 Kulkarni S, Pappalardo CM, Shabana AA (2017) Pantograph/catenary contact formulations. ASME J Vib Acoust 139(1):1–12
71.
Zurück zum Zitat Pappalardo CM, Wallin M, Shabana AA (2017) A new ANCF/CRBF fully parametrized plate finite element. ASME J Comput Nonlinear Dyn 12(3):1–13 Pappalardo CM, Wallin M, Shabana AA (2017) A new ANCF/CRBF fully parametrized plate finite element. ASME J Comput Nonlinear Dyn 12(3):1–13
72.
Zurück zum Zitat Guida D, Nilvetti F, Pappalardo CM (2012) Modelling, identification and control of a three-story building system. J Mech Eng Ind Des 1(3):36–60 Guida D, Nilvetti F, Pappalardo CM (2012) Modelling, identification and control of a three-story building system. J Mech Eng Ind Des 1(3):36–60
73.
Zurück zum Zitat Guida D, Pappalardo CM (2009) Sommerfeld and mass parameter identification of lubricated journal bearing. WSEAS Trans Appl Theor Mech 4(4):205–214 Guida D, Pappalardo CM (2009) Sommerfeld and mass parameter identification of lubricated journal bearing. WSEAS Trans Appl Theor Mech 4(4):205–214
74.
Zurück zum Zitat Guida D, Nilvetti F, Pappalardo CM (2009) Parameter identification of a two degrees of freedom mechanical system. Int J Mech 3(2):23–30 Guida D, Nilvetti F, Pappalardo CM (2009) Parameter identification of a two degrees of freedom mechanical system. Int J Mech 3(2):23–30
75.
Zurück zum Zitat Guida D, Nilvetti F, Pappalardo CM (2010) Parameter identification of a full-car model for active suspension design. J Achiev Mater Manuf Eng 40(2):138–148 Guida D, Nilvetti F, Pappalardo CM (2010) Parameter identification of a full-car model for active suspension design. J Achiev Mater Manuf Eng 40(2):138–148
76.
Zurück zum Zitat Nilvetti F, Pappalardo CM, Guida D (2012) Mass, stiffness and damping identification of a two-story building model. J Mech Eng Ind Des 1(2):19–35 Nilvetti F, Pappalardo CM, Guida D (2012) Mass, stiffness and damping identification of a two-story building model. J Mech Eng Ind Des 1(2):19–35
77.
Zurück zum Zitat Guida D, Nilvetti F, Pappalardo CM (2009) Instability induced by dry friction. Int J Mech 3(3):44–51 Guida D, Nilvetti F, Pappalardo CM (2009) Instability induced by dry friction. Int J Mech 3(3):44–51
78.
Zurück zum Zitat Guida D, Nilvetti F, Pappalardo CM (2009) Dry friction inuence on cart pendulum dynamics. Int J Mech 3(2):31–38 Guida D, Nilvetti F, Pappalardo CM (2009) Dry friction inuence on cart pendulum dynamics. Int J Mech 3(2):31–38
79.
Zurück zum Zitat Guida D, Nilvetti F, Pappalardo CM (2010) Dry friction of bearings on dynamics and control of an inverted pendulum. J Achiev Mater Manuf Eng 38(1):80–94 Guida D, Nilvetti F, Pappalardo CM (2010) Dry friction of bearings on dynamics and control of an inverted pendulum. J Achiev Mater Manuf Eng 38(1):80–94
80.
Zurück zum Zitat Guida D, Pappalardo CM (2013) A new control algorithm for active suspension systems featuring hysteresis. FME Trans 41(4):285–290 Guida D, Pappalardo CM (2013) A new control algorithm for active suspension systems featuring hysteresis. FME Trans 41(4):285–290
81.
Zurück zum Zitat Marsden JE, Hughes TJR (1994) Mathematical foundations of elasticity. Dover, New YorkMATH Marsden JE, Hughes TJR (1994) Mathematical foundations of elasticity. Dover, New YorkMATH
82.
Zurück zum Zitat Meirovitch L (1980) Computational methods in structural dynamics. Springer, NetherlandsMATH Meirovitch L (1980) Computational methods in structural dynamics. Springer, NetherlandsMATH
83.
Zurück zum Zitat Bathe JK (2007) Finite element procedures. Prentice Hall, Upper Saddle River, New JerseyMATH Bathe JK (2007) Finite element procedures. Prentice Hall, Upper Saddle River, New JerseyMATH
84.
Zurück zum Zitat Hughes TJR (1987) The finite element method: linear static and dynamic finite element analysis. Prentice Hall, Englewood CliffsMATH Hughes TJR (1987) The finite element method: linear static and dynamic finite element analysis. Prentice Hall, Englewood CliffsMATH
85.
Zurück zum Zitat Shabana AA (2012) Computational continuum mechanics, 2nd edn. Cambridge University Press, CambridgeMATH Shabana AA (2012) Computational continuum mechanics, 2nd edn. Cambridge University Press, CambridgeMATH
86.
Zurück zum Zitat Shabana AA (2015) Definition of ANCF finite elements. ASME J Comput Nonlinear Dyn 10(5):1–5 Shabana AA (2015) Definition of ANCF finite elements. ASME J Comput Nonlinear Dyn 10(5):1–5
87.
Zurück zum Zitat Belytschko T, Liu WK, Moran B, Elkhodary KI (2013) Nonlinear finite elements for continua and structures, 2nd edn. Wiley, HobokenMATH Belytschko T, Liu WK, Moran B, Elkhodary KI (2013) Nonlinear finite elements for continua and structures, 2nd edn. Wiley, HobokenMATH
88.
Zurück zum Zitat Wong JY (2009) Terramechanics and off-road vehicle engineering: terrain behaviour, off-road vehicle performance, and design, 2nd edn. Butterworth-Heinemann, Oxford Wong JY (2009) Terramechanics and off-road vehicle engineering: terrain behaviour, off-road vehicle performance, and design, 2nd edn. Butterworth-Heinemann, Oxford
89.
Zurück zum Zitat Pacejka H (2012) Tire and vehicle dynamics, 3rd edn. Butterworth-Heinemann, Oxford Pacejka H (2012) Tire and vehicle dynamics, 3rd edn. Butterworth-Heinemann, Oxford
90.
Zurück zum Zitat Blundell M, Harty D (2014) Multibody systems approach to vehicle dynamics, 2nd edn. Butterworth-Heinemann, Oxford Blundell M, Harty D (2014) Multibody systems approach to vehicle dynamics, 2nd edn. Butterworth-Heinemann, Oxford
91.
Zurück zum Zitat Shabana AA, Zaazaa KE, Sugiyama H (2008) Railroad vehicle dynamics: a computational approach. CRC Press - Taylor and Francis, Boca RatonMATH Shabana AA, Zaazaa KE, Sugiyama H (2008) Railroad vehicle dynamics: a computational approach. CRC Press - Taylor and Francis, Boca RatonMATH
92.
93.
Zurück zum Zitat Crassidis JL, Junkins JL (2011) Optimal estimation of dynamic systems, 2nd edn. CRC Press - Taylor and Francis, Boca RatonMATH Crassidis JL, Junkins JL (2011) Optimal estimation of dynamic systems, 2nd edn. CRC Press - Taylor and Francis, Boca RatonMATH
94.
Zurück zum Zitat Manca F, Giordano S, Palla PL, Zucca R, Cleri F, Colombo L (2012) Theory and Monte Carlo simulations for the stretching of flexible and semiflexible single polymer chains under external fields. J Chem Phys 136:1–11CrossRef Manca F, Giordano S, Palla PL, Zucca R, Cleri F, Colombo L (2012) Theory and Monte Carlo simulations for the stretching of flexible and semiflexible single polymer chains under external fields. J Chem Phys 136:1–11CrossRef
95.
Zurück zum Zitat Manca F, Giordano S, Palla PL, Zucca R, Cleri F, Colombo L (2012) Theory and Monte Carlo simulations for the stretching of flexible and semiflexible single polymer chains under external fields. J Chem Phys 137:1–13CrossRef Manca F, Giordano S, Palla PL, Zucca R, Cleri F, Colombo L (2012) Theory and Monte Carlo simulations for the stretching of flexible and semiflexible single polymer chains under external fields. J Chem Phys 137:1–13CrossRef
96.
Zurück zum Zitat Lewis FL, Xie L, Popa D (2008) Optimal and robust estimation: with an introduction to stochastic control theory, 2nd edn. CRC Press - Taylor and Francis, Boca RatonMATH Lewis FL, Xie L, Popa D (2008) Optimal and robust estimation: with an introduction to stochastic control theory, 2nd edn. CRC Press - Taylor and Francis, Boca RatonMATH
97.
Zurück zum Zitat Brown RG, Hwang PYC (2012) Introduction to random signals and applied Kalman filtering with MATLAB exercises, 4th edn. Wiley, HobokenMATH Brown RG, Hwang PYC (2012) Introduction to random signals and applied Kalman filtering with MATLAB exercises, 4th edn. Wiley, HobokenMATH
98.
Zurück zum Zitat Nikravesh PE (1988) Computer-aided analysis of mechanical systems. Prentice Hall, Englewood Cliffs Nikravesh PE (1988) Computer-aided analysis of mechanical systems. Prentice Hall, Englewood Cliffs
99.
Zurück zum Zitat Haug EJ (1989) Computer aided kinematics and dynamics of mechanical systems. Volume I: basic methods. Allyn and Bacon, Needham Haug EJ (1989) Computer aided kinematics and dynamics of mechanical systems. Volume I: basic methods. Allyn and Bacon, Needham
100.
Zurück zum Zitat Cheli F, Pennestri E (2006) Cinematica e dinamica dei sistemi multibody, volume 1. Casa Editrice Ambrosiana, Milano Cheli F, Pennestri E (2006) Cinematica e dinamica dei sistemi multibody, volume 1. Casa Editrice Ambrosiana, Milano
101.
Zurück zum Zitat Cheli F, Pennestri E (2006) Cinematica e dinamica dei sistemi multibody, volume 2. Casa Editrice Ambrosiana, Milano Cheli F, Pennestri E (2006) Cinematica e dinamica dei sistemi multibody, volume 2. Casa Editrice Ambrosiana, Milano
102.
Zurück zum Zitat Udwadia FE, Kalaba RE (2007) Analytical dynamics: a new approach. Cambridge University Press, CambridgeMATH Udwadia FE, Kalaba RE (2007) Analytical dynamics: a new approach. Cambridge University Press, CambridgeMATH
103.
Zurück zum Zitat Udwadia FE, Kalaba RE, De Falco D (2009) Dinamica analitica. Un nuovo approccio. Edises, Napoli Udwadia FE, Kalaba RE, De Falco D (2009) Dinamica analitica. Un nuovo approccio. Edises, Napoli
105.
Zurück zum Zitat Koganti PB, Udwadia FE (2016) Unified approach to modeling and control of rigid multibody systems. J Guid Control Dyn 39(12):2683–2698ADSCrossRef Koganti PB, Udwadia FE (2016) Unified approach to modeling and control of rigid multibody systems. J Guid Control Dyn 39(12):2683–2698ADSCrossRef
106.
Zurück zum Zitat Udwadia FE (2016) Inverse problem of Lagrangian mechanics for classically damped linear multi-degrees-of-freedom systems. ASME J Appl Mech 83(10):1–4CrossRef Udwadia FE (2016) Inverse problem of Lagrangian mechanics for classically damped linear multi-degrees-of-freedom systems. ASME J Appl Mech 83(10):1–4CrossRef
107.
Zurück zum Zitat Udwadia FE, Koganti PB (2015) Optimal stable control for nonlinear dynamical systems: an analytical dynamics based approach. J Nonlinear Dyn 82(1–2):547–562MathSciNetMATHCrossRef Udwadia FE, Koganti PB (2015) Optimal stable control for nonlinear dynamical systems: an analytical dynamics based approach. J Nonlinear Dyn 82(1–2):547–562MathSciNetMATHCrossRef
108.
Zurück zum Zitat Udwadia FE, Wanichanon T (2015) Control of uncertain nonlinear multibody mechanical systems. ASME J Appl Mech 81(4):1–11 Udwadia FE, Wanichanon T (2015) Control of uncertain nonlinear multibody mechanical systems. ASME J Appl Mech 81(4):1–11
109.
Zurück zum Zitat Pappalardo CM (2012) Combination of extended Udwadia–Kalaba control algorithm with extended Kalman filter estimation method. J Mech Eng Ind Des 1(1):1–18 Pappalardo CM (2012) Combination of extended Udwadia–Kalaba control algorithm with extended Kalman filter estimation method. J Mech Eng Ind Des 1(1):1–18
110.
Zurück zum Zitat Guida D, Pappalardo CM (2012) A new control algorithm for nonlinear underactuated mechanical systems. J Mech Eng Ind Des 1(4):61–82 Guida D, Pappalardo CM (2012) A new control algorithm for nonlinear underactuated mechanical systems. J Mech Eng Ind Des 1(4):61–82
Metadaten
Titel
Control of nonlinear vibrations using the adjoint method
verfasst von
Carmine M. Pappalardo
Domenico Guida
Publikationsdatum
28.12.2016
Verlag
Springer Netherlands
Erschienen in
Meccanica / Ausgabe 11-12/2017
Print ISSN: 0025-6455
Elektronische ISSN: 1572-9648
DOI
https://doi.org/10.1007/s11012-016-0601-1

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