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Hysteresis phenomena in biology / / Hamid Reza Noori
Hysteresis phenomena in biology / / Hamid Reza Noori
Autore Noori Hamid Reza
Edizione [1st ed. 2014.]
Pubbl/distr/stampa Heidelberg [Germany] : , : Springer, , 2014
Descrizione fisica 1 online resource (xi, 45 pages) : illustrations
Disciplina 571.47
Collana SpringerBriefs in Mathematical Methods
Soggetto topico Hysteresis
Hysteresis - Mathematical models
ISBN 3-642-38218-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction -- Bifurcation Theory and Bistability -- Preisach Models -- Examples of Hysteresis Phenomena in Biology.
Record Nr. UNINA-9910300146703321
Noori Hamid Reza  
Heidelberg [Germany] : , : Springer, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Mathematics of hysteretic phenomena : the T(x) model for the description of hysteresis
Mathematics of hysteretic phenomena : the T(x) model for the description of hysteresis
Autore Takács J
Pubbl/distr/stampa [Place of publication not identified], : Wiley VCH, 2003
Disciplina 538/.3
Soggetto topico Hysteresis - Mathematical models
Hysteresis
Electricity & Magnetism
Physics
Physical Sciences & Mathematics
ISBN 3-527-60652-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910144707303321
Takács J  
[Place of publication not identified], : Wiley VCH, 2003
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Mathematics of hysteretic phenomena : the T(x) model for the description of hysteresis
Mathematics of hysteretic phenomena : the T(x) model for the description of hysteresis
Autore Takács J
Pubbl/distr/stampa [Place of publication not identified], : Wiley VCH, 2003
Disciplina 538/.3
Soggetto topico Hysteresis - Mathematical models
Hysteresis
Electricity & Magnetism
Physics
Physical Sciences & Mathematics
ISBN 3-527-60652-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910830361003321
Takács J  
[Place of publication not identified], : Wiley VCH, 2003
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Mathematics of hysteretic phenomena : the T(x) model for the description of hysteresis
Mathematics of hysteretic phenomena : the T(x) model for the description of hysteresis
Autore Takács J
Pubbl/distr/stampa [Place of publication not identified], : Wiley VCH, 2003
Disciplina 538/.3
Soggetto topico Hysteresis - Mathematical models
Hysteresis
Electricity & Magnetism
Physics
Physical Sciences & Mathematics
ISBN 3-527-60652-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910877069503321
Takács J  
[Place of publication not identified], : Wiley VCH, 2003
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Modeling and precision control of systems with hysteresis / / Lei Liu, Yi Yang
Modeling and precision control of systems with hysteresis / / Lei Liu, Yi Yang
Autore Liu Lei
Pubbl/distr/stampa Oxford, England ; ; Waltham, Massachusetts : , : Butterworth-Heinemann, , 2016
Descrizione fisica 1 online resource (186 p.)
Disciplina 538.3
Soggetto topico Hysteresis - Mathematical models
Hysteresis - Mathematics
ISBN 0-12-803567-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Modeling and Precision Control of Systems With Hysteresis; Copyright; Contents; Preface; Acknowledgments; Chapter 1: Introduction; 1.1 Motivation; 1.2 Literature Review; 1.3 Book Objectives; 1.4 Book Overview; References; Chapter 2: Fundamentals of Systems with Hysteresis; 2.1 Introduction; 2.2 Smart Systems with Hysteresis; 2.3 Mechanical and Capacitor Dynamics; 2.4 Static Hysteresis; 2.4.1 Preisach Hysteresis; 2.4.2 Preisach Plane; 2.4.3 Preisach Hysteresis Properties; Wiping-out Property; Rate-Independence Property; Congruence Property
2.5 Behavior Comparison of Preisach Hysteresis and Phase Delay under Sinusoidal Inputs2.6 Closed-Loop Response of Smart Systems with Hysteresis; 2.7 Dynamic Hysteresis; 2.8 Composite Representation of Dynamic Hysteresis; 2.9 Modeling Suggestions for Systems with Hysteresis ; 2.10 Conclusions; References; Chapter 3: Hysteresis Modeling in Smart Actuators; 3.1 Introduction; 3.2 Simplified Composite Representation of Smart Actuators; 3.2.1 Static Preisach Hysteresis; 3.2.2 Simplified Composite Representation; 3.2.3 Closed-loop Control Property
3.2.4 Simplified Identification Approach for Composite HysteresisHysteresis Measurable; Hysteresis Unmeasurable; 3.2.5 Simplified Control of Linear Dynamics with Input Static Preisach Hysteresis; 3.2.6 Persistent-Excitation Problem; 3.3 Creep Effect; 3.3.1 Linear Creep Model; 3.3.2 Coupled Hysteresis and Creep Effects; 3.4 Mechanical Vibration and the RC Effect in Piezoelectric Actuators ; 3.5 Dynamics and Effects of Smart Actuators at Different Frequencies; References; Chapter 4: Comprehensive Modeling of Multifield Hysteretic Dynamics; 4.1 Introduction
4.2 Description of a Piezoelectric Smart System4.2.1 Typical Structure of a Piezoelectric Smart System; 4.2.2 Working Principle of a Capacitive Displacement Sensor; 4.3 Multifield Modeling of the Hysteretic Dynamics; 4.3.1 Multifield Modeling of the Hysteretic Dynamics; 4.4 Identification Strategy Design; 4.4.1 Pre-execution of the Creep, Electrical, and Vibration Dynamics; 4.4.2 Identification of the Creep, Electrical, and Vibration Dynamics; 4.4.3 Identification of the Preisach Hysteresis; 4.5 Experimental Studies of the Proposed Modeling and Identification; 4.5.1 Experimental Setup
4.5.2 Identification Result for the Creep, Electrical, and Vibration Dynamics4.5.3 Identification Result for the Preisach Hysteresis; 4.5.4 Discussion; 4.6 Complete Modeling of Hysteretic Dynamics in Piezoelectric Smart Systems with High Stiffness; 4.7 Conclusion; References; Chapter 5: Control Approaches for Systems with Hysteresis; 5.1 Introduction; 5.2 PID Control Tuning; 5.2.1 Ziegler-Nichols Tuning Control; 5.2.2 Ziegler-Nichols Tuning of Systems with Hysteresis; 5.2.3 Integral Control; 5.3 Inversion-Based Feedforward Control; 5.3.1 Preisach Hysteresis-Based Feedforward Control
5.3.2 Composite Hysteresis-Based Feedforward Control
Record Nr. UNINA-9910797980803321
Liu Lei  
Oxford, England ; ; Waltham, Massachusetts : , : Butterworth-Heinemann, , 2016
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Modeling and precision control of systems with hysteresis / / Lei Liu, Yi Yang
Modeling and precision control of systems with hysteresis / / Lei Liu, Yi Yang
Autore Liu Lei
Pubbl/distr/stampa Oxford, England ; ; Waltham, Massachusetts : , : Butterworth-Heinemann, , 2016
Descrizione fisica 1 online resource (186 p.)
Disciplina 538.3
Soggetto topico Hysteresis - Mathematical models
Hysteresis - Mathematics
ISBN 0-12-803567-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Modeling and Precision Control of Systems With Hysteresis; Copyright; Contents; Preface; Acknowledgments; Chapter 1: Introduction; 1.1 Motivation; 1.2 Literature Review; 1.3 Book Objectives; 1.4 Book Overview; References; Chapter 2: Fundamentals of Systems with Hysteresis; 2.1 Introduction; 2.2 Smart Systems with Hysteresis; 2.3 Mechanical and Capacitor Dynamics; 2.4 Static Hysteresis; 2.4.1 Preisach Hysteresis; 2.4.2 Preisach Plane; 2.4.3 Preisach Hysteresis Properties; Wiping-out Property; Rate-Independence Property; Congruence Property
2.5 Behavior Comparison of Preisach Hysteresis and Phase Delay under Sinusoidal Inputs2.6 Closed-Loop Response of Smart Systems with Hysteresis; 2.7 Dynamic Hysteresis; 2.8 Composite Representation of Dynamic Hysteresis; 2.9 Modeling Suggestions for Systems with Hysteresis ; 2.10 Conclusions; References; Chapter 3: Hysteresis Modeling in Smart Actuators; 3.1 Introduction; 3.2 Simplified Composite Representation of Smart Actuators; 3.2.1 Static Preisach Hysteresis; 3.2.2 Simplified Composite Representation; 3.2.3 Closed-loop Control Property
3.2.4 Simplified Identification Approach for Composite HysteresisHysteresis Measurable; Hysteresis Unmeasurable; 3.2.5 Simplified Control of Linear Dynamics with Input Static Preisach Hysteresis; 3.2.6 Persistent-Excitation Problem; 3.3 Creep Effect; 3.3.1 Linear Creep Model; 3.3.2 Coupled Hysteresis and Creep Effects; 3.4 Mechanical Vibration and the RC Effect in Piezoelectric Actuators ; 3.5 Dynamics and Effects of Smart Actuators at Different Frequencies; References; Chapter 4: Comprehensive Modeling of Multifield Hysteretic Dynamics; 4.1 Introduction
4.2 Description of a Piezoelectric Smart System4.2.1 Typical Structure of a Piezoelectric Smart System; 4.2.2 Working Principle of a Capacitive Displacement Sensor; 4.3 Multifield Modeling of the Hysteretic Dynamics; 4.3.1 Multifield Modeling of the Hysteretic Dynamics; 4.4 Identification Strategy Design; 4.4.1 Pre-execution of the Creep, Electrical, and Vibration Dynamics; 4.4.2 Identification of the Creep, Electrical, and Vibration Dynamics; 4.4.3 Identification of the Preisach Hysteresis; 4.5 Experimental Studies of the Proposed Modeling and Identification; 4.5.1 Experimental Setup
4.5.2 Identification Result for the Creep, Electrical, and Vibration Dynamics4.5.3 Identification Result for the Preisach Hysteresis; 4.5.4 Discussion; 4.6 Complete Modeling of Hysteretic Dynamics in Piezoelectric Smart Systems with High Stiffness; 4.7 Conclusion; References; Chapter 5: Control Approaches for Systems with Hysteresis; 5.1 Introduction; 5.2 PID Control Tuning; 5.2.1 Ziegler-Nichols Tuning Control; 5.2.2 Ziegler-Nichols Tuning of Systems with Hysteresis; 5.2.3 Integral Control; 5.3 Inversion-Based Feedforward Control; 5.3.1 Preisach Hysteresis-Based Feedforward Control
5.3.2 Composite Hysteresis-Based Feedforward Control
Record Nr. UNINA-9910817840003321
Liu Lei  
Oxford, England ; ; Waltham, Massachusetts : , : Butterworth-Heinemann, , 2016
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Noise-driven phenomena in hysteretic systems / / Mihai Dimian, Petru Andrei
Noise-driven phenomena in hysteretic systems / / Mihai Dimian, Petru Andrei
Autore Dimian Mihai
Edizione [1st ed. 2014.]
Pubbl/distr/stampa New York : , : Springer, , 2014
Descrizione fisica 1 online resource (xiii, 233 pages) : illustrations
Disciplina 621.38224
Collana Signals and Communication Technology
Soggetto topico Hysteresis
Hysteresis - Mathematical models
Electronic noise
ISBN 1-4614-1374-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Mathematical Models of Hysteresis -- Noise and Stochastic Processes -- Stochastically Driven Hysteresis Systems in Science and Engineering -- Noise Driven Relaxation Phenomena in Hysteretic Systems -- Noise Spectral Density of  Hysteretic Systems -- Constructive Effects of Noise in Hysteretic Systems.
Record Nr. UNINA-9910299744203321
Dimian Mihai  
New York : , : Springer, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Systems with hysteresis [[electronic resource] ] : analysis, identification and control using the Bouc-Wen model / / Fayçal Ikhouane, José Rodellar
Systems with hysteresis [[electronic resource] ] : analysis, identification and control using the Bouc-Wen model / / Fayçal Ikhouane, José Rodellar
Autore Ikhouane Faycal
Pubbl/distr/stampa Chichester, England ; ; Hoboken, NJ, : John Wiley, c2007
Descrizione fisica 1 online resource (224 p.)
Disciplina 538.3
621
Altri autori (Persone) RodellarJosé
Soggetto topico Hysteresis - Mathematical models
Soggetto genere / forma Electronic books.
ISBN 1-280-97402-8
9786610974023
0-470-51320-9
0-470-51319-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Systems with Hysteresis; Contents; Preface; List of Figures; List of Tables; 1 Introduction; 1.1 Objective and Contents of the Book; 1.2 The Bouc-Wen Model: Origin and Literature Review; 2 Physical Consistency of the Bouc-Wen Model; 2.1 Introduction; 2.2 BIBO Stability of the Bouc-Wen Model; 2.2.1 The Model; 2.2.2 Problem Statement; 2.2.3 Classification of the BIBO-Stable Bouc-Wen Models; 2.2.4 Practical Remarks; 2.3 Free Motion of a Hysteretic Structural System; 2.3.1 Problem Statement; 2.3.2 Asymptotic Trajectories; 2.3.3 Practical Remarks; 2.4 Passivity of the Bouc-Wen model
2.5 Limit Cases2.5.1 The Limit Case n = 1; 2.5.2 The Limit Case alpha = 1; 2.5.3 The Limit Case alpha = 0; 2.5.4 The Limit Case beta+gamma = 0; 2.6 Conclusion; 3 Forced Limit Cycle Characterization of the Bouc-Wen Model; 3.1 Introduction; 3.2 Problem Statement; 3.2.1 The Class of Inputs; 3.2.2 Problem Statement; 3.3 The Normalized Bouc-Wen Model; 3.4 Instrumental Functions; 3.5 Characterization of the Asymptotic Behaviour of the Hysteretic Output; 3.5.1 Technical Lemmas; 3.5.2 Analytic Description of the Forced Limit Cycles for the Bouc-Wen Model; 3.6 Simulation Example; 3.7 Conclusion
4 Variation of the Hysteresis Loop with the Bouc-Wen Model Parameters4.1 Introduction; 4.2 Background Results and Methodology of the Analysis; 4.2.1 Background Results; 4.2.2 Methodology of the Analysis; 4.3 Maximal Value of the Hysteretic Output; 4.3.1 Variation with Respect to delta; 4.3.2 Variation with Respect to sigma; 4.3.3 Variation with Respect to n; 4.3.4 Summary of the Obtained Results; 4.4 Variation of the Zero of the Hysteretic Output; 4.4.1 Variation with Respect to delta; 4.4.2 Variation with Respect to sigma; 4.4.3 Variation with Respect to n
4.4.4 Summary of the Obtained Results4.5 Variation of the Hysteretic Output with the Bouc-Wen Model Parameters; 4.5.1 Variation with Respect to delta; 4.5.2 Variation with Respect to sigma; 4.5.3 Variation with Respect to n; 4.5.4 Summary of the Obtained Results; 4.6 The Four Regions of the Bouc-Wen Model; 4.6.1 The Linear Region Rl; 4.6.2 The Plastic Region Rp; 4.6.3 The Transition Regions Rt and Rs; 4.7 Interpretation of the Normalized Bouc-Wen Model Parameters; 4.7.1 The Parameters rho and delta; 4.7.2 The Parameter sigma; 4.7.3 The Parameter n; 4.8 Conclusion
5 Robust Identification of the Bouc-Wen Model Parameters5.1 Introduction; 5.2 Parameter Identification of the Bouc-Wen Model; 5.2.1 Class of Inputs; 5.2.2 Identification Methodology; 5.2.3 Robustness of the Identification Method; 5.2.4 Numerical Simulation Example; 5.3 Modelling and Identification of a Magnetorheological Damper; 5.3.1 Some Insights into the Viscous + Bouc-Wen Model for Shear Mode MR Dampers; 5.3.2 Alternatives to the Viscous + Bouc-Wen Model for Shear Mode MR Dampers; 5.3.3 Identification Methodology for the Viscous + Dahl Model; 5.3.4 Numerical Simulations; 5.4 Conclusion
6 Control of a System with a Bouc-Wen Hysteresis
Record Nr. UNINA-9910143591103321
Ikhouane Faycal  
Chichester, England ; ; Hoboken, NJ, : John Wiley, c2007
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Systems with hysteresis [[electronic resource] ] : analysis, identification and control using the Bouc-Wen model / / Fayçal Ikhouane, José Rodellar
Systems with hysteresis [[electronic resource] ] : analysis, identification and control using the Bouc-Wen model / / Fayçal Ikhouane, José Rodellar
Autore Ikhouane Faycal
Pubbl/distr/stampa Chichester, England ; ; Hoboken, NJ, : John Wiley, c2007
Descrizione fisica 1 online resource (224 p.)
Disciplina 538.3
621
Altri autori (Persone) RodellarJosé
Soggetto topico Hysteresis - Mathematical models
ISBN 1-280-97402-8
9786610974023
0-470-51320-9
0-470-51319-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Systems with Hysteresis; Contents; Preface; List of Figures; List of Tables; 1 Introduction; 1.1 Objective and Contents of the Book; 1.2 The Bouc-Wen Model: Origin and Literature Review; 2 Physical Consistency of the Bouc-Wen Model; 2.1 Introduction; 2.2 BIBO Stability of the Bouc-Wen Model; 2.2.1 The Model; 2.2.2 Problem Statement; 2.2.3 Classification of the BIBO-Stable Bouc-Wen Models; 2.2.4 Practical Remarks; 2.3 Free Motion of a Hysteretic Structural System; 2.3.1 Problem Statement; 2.3.2 Asymptotic Trajectories; 2.3.3 Practical Remarks; 2.4 Passivity of the Bouc-Wen model
2.5 Limit Cases2.5.1 The Limit Case n = 1; 2.5.2 The Limit Case alpha = 1; 2.5.3 The Limit Case alpha = 0; 2.5.4 The Limit Case beta+gamma = 0; 2.6 Conclusion; 3 Forced Limit Cycle Characterization of the Bouc-Wen Model; 3.1 Introduction; 3.2 Problem Statement; 3.2.1 The Class of Inputs; 3.2.2 Problem Statement; 3.3 The Normalized Bouc-Wen Model; 3.4 Instrumental Functions; 3.5 Characterization of the Asymptotic Behaviour of the Hysteretic Output; 3.5.1 Technical Lemmas; 3.5.2 Analytic Description of the Forced Limit Cycles for the Bouc-Wen Model; 3.6 Simulation Example; 3.7 Conclusion
4 Variation of the Hysteresis Loop with the Bouc-Wen Model Parameters4.1 Introduction; 4.2 Background Results and Methodology of the Analysis; 4.2.1 Background Results; 4.2.2 Methodology of the Analysis; 4.3 Maximal Value of the Hysteretic Output; 4.3.1 Variation with Respect to delta; 4.3.2 Variation with Respect to sigma; 4.3.3 Variation with Respect to n; 4.3.4 Summary of the Obtained Results; 4.4 Variation of the Zero of the Hysteretic Output; 4.4.1 Variation with Respect to delta; 4.4.2 Variation with Respect to sigma; 4.4.3 Variation with Respect to n
4.4.4 Summary of the Obtained Results4.5 Variation of the Hysteretic Output with the Bouc-Wen Model Parameters; 4.5.1 Variation with Respect to delta; 4.5.2 Variation with Respect to sigma; 4.5.3 Variation with Respect to n; 4.5.4 Summary of the Obtained Results; 4.6 The Four Regions of the Bouc-Wen Model; 4.6.1 The Linear Region Rl; 4.6.2 The Plastic Region Rp; 4.6.3 The Transition Regions Rt and Rs; 4.7 Interpretation of the Normalized Bouc-Wen Model Parameters; 4.7.1 The Parameters rho and delta; 4.7.2 The Parameter sigma; 4.7.3 The Parameter n; 4.8 Conclusion
5 Robust Identification of the Bouc-Wen Model Parameters5.1 Introduction; 5.2 Parameter Identification of the Bouc-Wen Model; 5.2.1 Class of Inputs; 5.2.2 Identification Methodology; 5.2.3 Robustness of the Identification Method; 5.2.4 Numerical Simulation Example; 5.3 Modelling and Identification of a Magnetorheological Damper; 5.3.1 Some Insights into the Viscous + Bouc-Wen Model for Shear Mode MR Dampers; 5.3.2 Alternatives to the Viscous + Bouc-Wen Model for Shear Mode MR Dampers; 5.3.3 Identification Methodology for the Viscous + Dahl Model; 5.3.4 Numerical Simulations; 5.4 Conclusion
6 Control of a System with a Bouc-Wen Hysteresis
Record Nr. UNINA-9910830842503321
Ikhouane Faycal  
Chichester, England ; ; Hoboken, NJ, : John Wiley, c2007
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Systems with hysteresis : analysis, identification and control using the Bouc-Wen model / / Faycal Ikhouane, Jose Rodellar
Systems with hysteresis : analysis, identification and control using the Bouc-Wen model / / Faycal Ikhouane, Jose Rodellar
Autore Ikhouane Faycal
Pubbl/distr/stampa Chichester, England ; ; Hoboken, NJ, : John Wiley, c2007
Descrizione fisica 1 online resource (224 p.)
Disciplina 621
Altri autori (Persone) RodellarJose
Soggetto topico Hysteresis - Mathematical models
ISBN 1-280-97402-8
9786610974023
0-470-51320-9
0-470-51319-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Systems with Hysteresis; Contents; Preface; List of Figures; List of Tables; 1 Introduction; 1.1 Objective and Contents of the Book; 1.2 The Bouc-Wen Model: Origin and Literature Review; 2 Physical Consistency of the Bouc-Wen Model; 2.1 Introduction; 2.2 BIBO Stability of the Bouc-Wen Model; 2.2.1 The Model; 2.2.2 Problem Statement; 2.2.3 Classification of the BIBO-Stable Bouc-Wen Models; 2.2.4 Practical Remarks; 2.3 Free Motion of a Hysteretic Structural System; 2.3.1 Problem Statement; 2.3.2 Asymptotic Trajectories; 2.3.3 Practical Remarks; 2.4 Passivity of the Bouc-Wen model
2.5 Limit Cases2.5.1 The Limit Case n = 1; 2.5.2 The Limit Case alpha = 1; 2.5.3 The Limit Case alpha = 0; 2.5.4 The Limit Case beta+gamma = 0; 2.6 Conclusion; 3 Forced Limit Cycle Characterization of the Bouc-Wen Model; 3.1 Introduction; 3.2 Problem Statement; 3.2.1 The Class of Inputs; 3.2.2 Problem Statement; 3.3 The Normalized Bouc-Wen Model; 3.4 Instrumental Functions; 3.5 Characterization of the Asymptotic Behaviour of the Hysteretic Output; 3.5.1 Technical Lemmas; 3.5.2 Analytic Description of the Forced Limit Cycles for the Bouc-Wen Model; 3.6 Simulation Example; 3.7 Conclusion
4 Variation of the Hysteresis Loop with the Bouc-Wen Model Parameters4.1 Introduction; 4.2 Background Results and Methodology of the Analysis; 4.2.1 Background Results; 4.2.2 Methodology of the Analysis; 4.3 Maximal Value of the Hysteretic Output; 4.3.1 Variation with Respect to delta; 4.3.2 Variation with Respect to sigma; 4.3.3 Variation with Respect to n; 4.3.4 Summary of the Obtained Results; 4.4 Variation of the Zero of the Hysteretic Output; 4.4.1 Variation with Respect to delta; 4.4.2 Variation with Respect to sigma; 4.4.3 Variation with Respect to n
4.4.4 Summary of the Obtained Results4.5 Variation of the Hysteretic Output with the Bouc-Wen Model Parameters; 4.5.1 Variation with Respect to delta; 4.5.2 Variation with Respect to sigma; 4.5.3 Variation with Respect to n; 4.5.4 Summary of the Obtained Results; 4.6 The Four Regions of the Bouc-Wen Model; 4.6.1 The Linear Region Rl; 4.6.2 The Plastic Region Rp; 4.6.3 The Transition Regions Rt and Rs; 4.7 Interpretation of the Normalized Bouc-Wen Model Parameters; 4.7.1 The Parameters rho and delta; 4.7.2 The Parameter sigma; 4.7.3 The Parameter n; 4.8 Conclusion
5 Robust Identification of the Bouc-Wen Model Parameters5.1 Introduction; 5.2 Parameter Identification of the Bouc-Wen Model; 5.2.1 Class of Inputs; 5.2.2 Identification Methodology; 5.2.3 Robustness of the Identification Method; 5.2.4 Numerical Simulation Example; 5.3 Modelling and Identification of a Magnetorheological Damper; 5.3.1 Some Insights into the Viscous + Bouc-Wen Model for Shear Mode MR Dampers; 5.3.2 Alternatives to the Viscous + Bouc-Wen Model for Shear Mode MR Dampers; 5.3.3 Identification Methodology for the Viscous + Dahl Model; 5.3.4 Numerical Simulations; 5.4 Conclusion
6 Control of a System with a Bouc-Wen Hysteresis
Record Nr. UNINA-9910877762303321
Ikhouane Faycal  
Chichester, England ; ; Hoboken, NJ, : John Wiley, c2007
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui