Dynamics of nonlinear time-delay systems

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Hauptverfasser: Lakshmanan, Muthuswamy 1946- (VerfasserIn), Senthilkumar, Dharmapuri Vijayan (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Berlin [u.a.] Springer 2010
Schriftenreihe:Springer series in synergetics
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Datensatz im Suchindex

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adam_text IMAGE 1 CONTENTS 1 DELAY DIFFERENTIAL EQUATIONS 1 1.1 INTRODUCTION 1 1.1.1 DDE WITH SINGLE CONSTANT DELAY 3 1.1.2 DDE WITH DISCRETE DELAYS 4 1.1.3 DDE WITH DISTRIBUTED DELAY 5 1.1.4 DDE WITH STATE-DEPENDENT DELAY 6 1.1.5 DDE WITH TIME-DEPENDENT DELAY 6 1.2 CONSTRUCTING THE SOLUTION FOR DDES WITH SINGLE CONSTANT DELAY . 7 1.2.1 LINEAR DELAY DIFFERENTIAL EQUATION 8 1.2.2 NUMERICAL SIMULATION OF DDES 10 1.2.3 NONLINEAR DELAY DIFFERENTIAL EQUATIONS 11 1.3 SALIENT FEATURES OF CHAOTIC TIME-DELAY SYSTEMS 13 REFERENCES 13 2 LINEAR STABILITY AND BIFURCATION ANALYSIS 17 2.1 INTRODUCTION 17 2.2 LINEAR STABILITY ANALYSIS 17 2.2.1 EXAMPLE: LINEAR DELAY DIFFERENTIAL EQUATION 19 2.3 A GEOMETRIC APPROACH TO STUDY STABILITY 20 2.3.1 EXAMPLE: LINEAR DELAY DIFFERENTIAL EQUATION 21 2.4 A GENERAL APPROACH TO DETERMINE LINEAR STABILITY OF EQUILIBRIUM POINTS 22 2.4.1 CHARACTERISTIC EQUATION 22 2.4.2 STABILITY CONDITIONS 22 2.4.3 STABILITY CURVES/SURFACES IN THE (R, A, B) PARAMETER SPACE 23 2.4.4 EXTENSION TO COUPLED DDES/COMPLEX SCALAR DDES 24 2.4.5 BIFURCATION ANALYSIS 25 2.4.6 RESULTS OF STABILITY ANALYSIS 25 2.4.7 A THEOREM ON THE STABILITY OF EQUILIBRIUM POINTS 26 2.4.8 EXAMPLE: LINEAR DELAY DIFFERENTIAL EQUATION 26 REFERENCES 29 BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1004244274 DIGITALISIERT DURCH IMAGE 2 DI CONTENTS 3 BIFURCATION AND CHAOS IN TIME-DELAYED PIECEWISE LINEAR DYNAMICAL SYSTEM 31 3.1 INTRODUCTION 31 3.2 SIMPLE SCALAR FIRST ORDER PIECEWISE LINEAR DDE 32 3.2.1 FIXED POINTS AND LINEAR STABILITY 33 3.3 NUMERICAL STUDY OF THE SINGLE SCALAR PIECEWISE LINEAR TIME-DELAY SYSTEM 36 3.3.1 DYNAMICS IN THE PSEUDOSPACE 36 3.3.2 TRANSIENTS 37 3.3.3 ONE AND TWO PARAMETER BIFURCATION DIAGRAMS 41 3.3.4 LYAPUNOV EXPONENTS AND HYPERCHAOTIC REGIMES 43 3.4 EXPERIMENTAL REALIZATION USING PSPICE SIMULATION 44 3.5 STABILITY ANALYSIS AND CHAOTIC DYNAMICS OF COUPLED DDES 46 3.5.1 FIXED POINTS AND LINEAR STABILITY 46 3.6 NUMERICAL ANALYSIS OF THE COUPLED DDE 49 3.6.1 TRANSIENTS 50 3.6.2 ONE AND TWO PARAMETER BIFURCATION DIAGRAMS 51 REFERENCES 53 4 A FEW OTHER INTERESTING CHAOTIC DELAY DIFFERENTIAL EQUATIONS 55 4. 1 INTRODUCTION 55 4.2 THE MACKEY-GLASS SYSTEM: A TYPICAL NONLINEAR DDE 55 4.2.1 MACKEY-GLASS TIME-DELAY SYSTEM 55 4.2.2 FIXED POINTS AND LINEAR STABILITY ANALYSIS 56 4.2.3 TIME-DELAY R = 0 57 4.2.4 TIME-DELAY T 0 57 4.2.5 NUMERICAL SIMULATION: BIFURCATIONS AND CHAOS 62 4.2.6 EXPERIMENTAL REALIZATION USING ELECTRONIC CIRCUIT 64 4.3 OTHER INTERESTING SCALAR CHAOTIC TIME-DELAY SYSTEMS 67 4.3.1 A SIMPLE CHAOTIC DELAY DIFFERENTIAL EQUATION 67 4.3.2 IKEDA TIME-DELAY SYSTEM 67 4.3.3 SCALAR TIME-DELAY SYSTEM WITH POLYNOMIAL NONLINEARITY 69 4.3.4 SCALAR TIME-DELAY SYSTEM WITH OTHER PIECEWISE LINEAR NONLINEARITIES 70 4.3.5 ANOTHER FORM OF SCALAR TIME-DELAY SYSTEM 73 4.3.6 EL NINO AND THE DELAYED ACTION OSCILLATOR 76 4.4 COUPLED CHAOTIC TIME-DELAY SYSTEMS 78 4.4.1 TIME-DELAYED CHUA'S CIRCUIT 78 4.4.2 SEMICONDUCTOR LASERS 79 4.4.3 NEURAL NETWORKS 81 REFERENCES 82 IMAGE 3 CONTENTS IMPLICATIONS OF DELAY FEEDBACK: AMPLITUDE DEATH AND OTHER EFFECTS 85 5.1 INTRODUCTION 85 5.2 TIME-DELAY INDUCED AMPLITUDE DEATH 85 5.2.1 THEORETICAL STUDY: SINGLE OSCILLATOR 86 5.2.2 EXPERIMENTAL STUDY 89 5.3 AMPLITUDE DEATH WITH DISTRIBUTED DELAY IN COUPLED LIMIT CYCLE OSCILLATORS 91 5.4 AMPLITUDE DEATH IN COUPLED CHAOTIC OSCILLATORS 93 5.5 AMPLITUDE DEATH WITH CONJUGATE (DISSIMILAR) COUPLING 96 5.6 AMPLITUDE DEATH WITH DYNAMIC COUPLING 98 5.7 TIME-DELAY INDUCED BIFURCATIONS 101 5.8 SOME OTHER EFFECTS OF DELAY FEEDBACK 102 REFERENCES 103 6 RECENT DEVELOPMENTS ON DELAY FEEDBACK/COUPLING: COMPLEX NETWORKS, CHIMERAS, GLOBALLY CLUSTERED CHIMERAS AND SYNCHRONIZATION 105 6.1 INTRODUCTION 105 6.2 COMPLEX NETWORKS 105 6.3 CHIMERA STATES IN DELAY COUPLED IDENTICAL OSCILLATORS 108 6.3.1 DISCOVERY OF CHIMERA STATES 108 6.3.2 CHIMERA STATES IN DELAY COUPLED SYSTEMS ILL 6.4 CHIMERA STATES IN DELAY COUPLED SUBPOPULATIONS: GLOBALLY CLUSTERED STATES 113 6.5 SYNCHRONIZATION IN COMPLEX NETWORKS WITH DELAY 117 6.6 CONTROLLING USING TIME-DELAY FEEDBACK 118 6.6.1 PYRAGAS TIME-DELAY FEEDBACK CONTROL 119 6.6.2 TRANSIENT BEHAVIOR WITH TIME-DELAY FEEDBACK 122 6.7 FURTHER DEVELOPMENTS 124 REFERENCES 125 7 COMPLETE SYNCHRONIZATION OF CHAOTIC OSCILLATIONS IN COUPLED TIME-DELAY SYSTEMS 127 7.1 INTRODUCTION 127 7.2 COMPLETE SYNCHRONIZATION IN COUPLED TIME-DELAY SYSTEMS 129 7.3 STABILITY USING KRASOVSKII-LYAPUNOV THEORY 130 7.4 NUMERICAL CONFIRMATION 133 7.4.1 CASE 1 134 7.4.2 CASE 2 134 7.4.3 CASE 3 135 7.4.4 CASE 4 135 7.5 CONCLUSION 135 REFERENCES 136 IMAGE 4 XIV CONTENTS 8 TRANSITION FROM ANTICIPATORY TO LAG SYNCHRONIZATION VIA COMPLETE SYNCHRONIZATION 139 8.1 INTRODUCTION 139 8.2 COUPLED SYSTEM AND THE GENERAL STABILITY CONDITION 139 8.3 COUPLED PIECEWISE LINEAR TIME-DELAY SYSTEM AND STABILITY CONDITION: TRANSITION FROM ANTICIPATORY TO LAG SYNCHRONIZATION . 141 8.3.1 ANTICIPATORY SYNCHRONIZATION FOR X 2 X\ 142 8.3.2 COMPLETE SYNCHRONIZATION FOR X 2 = X\ 146 8.3.3 LAG SYNCHRONIZATION FOR X 2 X\ 147 8.3.4 INVERSE SYNCHRONIZATIONS 149 8.4 TRANSITION FROM ANTICIPATORY TO LAG VIA COMPLETE SYNCHRONIZATION: MACKEY-GLASS AND IKEDA SYSTEMS 153 8.4.1 ANTICIPATORY SYNCHRONIZATION FOR X 2 X\ 154 8.4.2 COMPLETE SYNCHRONIZATION FOR X 2 = X\ 158 8.4.3 LAG SYNCHRONIZATION FOR X 2 X\ 158 8.5 INVERSE SYNCHRONIZATIONS: MACKEY-GLASS AND IKEDA SYSTEMS 161 REFERENCES 163 9 INTERMITTENCY TRANSITION TO GENERALIZED SYNCHRONIZATION 165 9.1 INTRODUCTION 165 9.2 BROAD RANGE (SLOW/DELAYED) INTERMITTENCY TRANSITION TO GS FOR LINEAR ERROR FEEDBACK COUPLING OF THE FORM (XI (F ) - X 2 (T)) * * 166 9.3 STABILITY CONDITION 167 9.4 APPROXIMATE (INTERMITTENT) GENERALIZED SYNCHRONIZATION 168 9.5 CHARACTERIZATION OF IGS 171 9.6 NARROW RANGE (IMMEDIATE) INTERMITTENCY TRANSITION TO GS FOR LINEAR DIRECT FEEDBACK COUPLING OF THE FORM X\{T) 173 9.7 BROAD RANGE INTERMITTENCY TRANSITION TO GS FOR NONLINEAR ERROR FEEDBACK COUPLING OF THE FORM {F{X\(T - X 2 )) - F(X 2 (T - R 2 ))) . 178 9.8 NARROW RANGE INTERMITTENCY TRANSITION TO GS FOR NONLINEAR DIRECT FEEDBACK COUPLING OF THE FORM F(X\ (T - X 2 )) 181 9.9 INTERMITTENCY TRANSITION TO GENERALIZED SYNCHRONIZATION: MACKEY-GLASS & IKEDA SYSTEMS 185 9.9.1 BROAD RANGE INTERMITTENCY TRANSITION TO GS 186 9.9.2 NARROW RANGE INTERMITTENCY TRANSITION TO GS 190 REFERENCES 1 99 10 TRANSITION FROM PHASE TO GENERALIZED SYNCHRONIZATION 201 10.1 INTRODUCTION 201 10.2 PHASE-COHERENT AND NON-PHASE-COHERENT ATTRACTORS 202 10.3 CPS IN CHAOTIC SYSTEMS 203 10.4 CPS AND TIME-DELAY SYSTEMS 205 10.5 CPS FROM POINCARE SURFACE OF SECTION OF THE TRANSFORMED ATTRACTOR 207 IMAGE 5 CONTENTS 10.6 CPS FROM RECURRENCE QUANTIFICATION ANALYSIS 210 10.7 CPS FROM THE LYAPUNOV EXPONENTS 213 10.8 CONCEPT OF LOCALIZED SETS 214 10.9 TRANSITION FROM PHASE TO GENERALIZED SYNCHRONIZATION: MACKEY-GLASS & IKEDA SYSTEMS 215 10.9.1 CPS FROM POINCARE SECTION OF THE TRANSFORMED ATTRACTOR . 217 10.9.2 CPS FROM RECURRENCE QUANTIFICATION ANALYSIS 218 10.9.3 CPS FROM THE LYAPUNOV EXPONENTS 219 10.9.4 CPS IN COUPLED IKEDA SYSTEMS 221 10.10 SUMMARY 225 REFERENCES 225 11 DTM INDUCED OSCILLATING SYNCHRONIZATION 227 11.1 INTRODUCTION 227 11.2 ESTIMATION OF THE EFFECT OF DELAY TIME MODULATION 228 11.2.1 FILLING FACTOR 228 11.2.2 LENGTH OF POLYGON LINE 230 11.2.3 AVERAGE MUTUAL INFORMATION 230 11.3 COUPLED SYSTEM AND STABILITY CONDITION IN THE PRESENCE OF DELAY TIME MODULATION 233 11.4 OSCILLATING SYNCHRONIZATION 235 11.5 INTERMITTENT ANTICIPATORY SYNCHRONIZATION 238 11.6 COMPLETE SYNCHRONIZATION 241 11.7 INTERMITTENT LAG SYNCHRONIZATION 242 11.8 COMPLEX OSCILLATING SYNCHRONIZATION 245 11.9 DTM INDUCED OSCILLATING SYNCHRONIZATION: MACKEY-GLASS & IKEDA SYSTEMS 245 11.9.1 COUPLED MACKEY-GLASS SYSTEMS 245 11.9.2 COUPLED IKEDA SYSTEMS 246 11.10 SUMMARY 248 REFERENCES 249 12 EXACT SOLUTIONS OF CERTAIN TIME DELAY SYSTEMS: THE CAR-FOLLOWING MODELS 251 12.1 INTRODUCTION 251 12.2 THE CAR-FOLLOWING MODELS 251 12.3 THE NEWELL MODEL 252 12.4 THE TANH CAR-FOLLOWING MODEL 255 12.5 OTHER DEVELOPMENTS 257 REFERENCES 258 IMAGE 6 XVI CONTENTS APPENDIX A COMPUTING LYAPUNOV EXPONENTS FOR TIME-DELAY SYSTEMS 259 A. 1 INTRODUCTION 259 A.2 LYAPUNOV EXPONENTS OF AN N-DIMENSIONAL DYNAMICAL SYSTEM . . . 259 A.2.1 COMPUTATION OF LYAPUNOV EXPONENTS 260 A.3 LYAPUNOV EXPONENTS OF A DDE 261 REFERENCES 262 B A BRIEF INTRODUCTION TO SYNCHRONIZATION IN CHAOTIC DYNAMICAL SYSTEMS 263 B.I INTRODUCTION 263 B.2 CHARACTERIZATION OF SYNCHRONIZATION 265 B.2.1 COMPLETE SYNCHRONIZATION 268 B.2.2 PHASE SYNCHRONIZATION 269 B.2.3 LAG SYNCHRONIZATION 271 B.2.4 ANTICIPATORY SYNCHRONIZATION 272 B.2.5 GENERALIZED SYNCHRONIZATION 273 REFERENCES 275 C RECURRENCE ANALYSIS 279 C.I INTRODUCTION 279 C.2 RECURRENCE PLOTS AND THEIR VARIANTS 280 C.2.1 RECURRENCE PLOTS 280 C.2.2 CROSS RECURRENCE PLOTS (CRP) 282 C.2.3 JOINT RECURRENCE PLOTS (JRP) 283 C.3 RECURRENCE QUANTIFICATION ANALYSIS (RQA) 284 C.3.1 GENERALIZED AUTOCORRELATION FUNCTION, P(T) 284 C.3.2 CORRELATION OF PROBABILITY OF RECURRENCE (CPR) 285 C.3.3 JOINT PROBABILITY OF RECURRENCE (JPR) 285 C.3.4 SIMILARITY OF PROBABILITY OF RECURRENCE (SPR) 286 C.4 SYNCHRONIZATION AND RECURRENCES 286 C.4.1 PS IN MUTUALLY COUPLED ROESSLER SYSTEMS 286 C.4.2 PHASE TO LAG SYNCHRONIZATION 288 REFERENCES 291 D SOME MORE EXAMPLES OF DDES 293 D. 1 INTRODUCTION 293 D.2 DDES WITH CONSTANT DELAY 293 D.2.1 HUTCHINSON'S EQUATION/DELAYED LOGISTIC EQUATION 293 D.2.2 GOPALSAMY AND LADAS POPULATION MODEL 293 D.2.3 STEM-CELL MODEL 294 D.2.4 PUPIL CYCLING MODEL 294 IMAGE 7 CONTENTS XVII D.3 DDES WITH DISCRETE DELAYS 295 D.3.1 AUSTRALIAN BLOWFLY MODEL 295 D.3.2 WILSON AND COWAN MODEL 295 D.3.3 HUMAN RESPIRATORY MODEL 295 D.4 DDES WITH DISTRIBUTED DELAY 296 D.4.1 VOLTERRA'S LOGISTIC EQUATION 296 D.4.2 NEURAL NETWORK WITH DISTRIBUTED DELAY 296 D.4.3 CHEMOSTAT MODEL 297 D.5 DDES WITH STATE-DEPENDENT DELAY 297 D.5.1 POPULATION MODEL 297 D.5.2 LOGISTIC MODEL WITH STATE DEPENDENT DELAY 297 D.5.3 MECHANICAL MODEL FOR MACHINE TOOL CHATTER 298 D.6 DDES WITH TIME-DEPENDENT DELAY 298 D.6.1 STEM-CELL EQUATION 298 D.6.2 NEURAL NETWORK MODEL 298 REFERENCES 299 GLOSSARY 301 INDEX 309
any_adam_object 1
author Lakshmanan, Muthuswamy 1946-
Senthilkumar, Dharmapuri Vijayan
author_GND (DE-588)112070434
author_facet Lakshmanan, Muthuswamy 1946-
Senthilkumar, Dharmapuri Vijayan
author_role aut
aut
author_sort Lakshmanan, Muthuswamy 1946-
author_variant m l ml
d v s dv dvs
building Verbundindex
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ctrlnum (OCoLC)701477243
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dewey-full 515.39
dewey-hundreds 500 - Natural sciences and mathematics
dewey-ones 515 - Analysis
dewey-raw 515.39
dewey-search 515.39
dewey-sort 3515.39
dewey-tens 510 - Mathematics
discipline Physik
Mathematik
format Book
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indexdate 2024-07-20T10:59:53Z
institution BVB
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physical XVII, 313 S. graph. Darst. 24 cm
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spelling Lakshmanan, Muthuswamy 1946- Verfasser (DE-588)112070434 aut
Dynamics of nonlinear time-delay systems M. Lakshmanan ; D. V. Senthilkumar
Berlin [u.a.] Springer 2010
XVII, 313 S. graph. Darst. 24 cm
txt rdacontent
n rdamedia
nc rdacarrier
Springer series in synergetics
Springer complexity
Literaturangaben
Nichtlineare Dynamik (DE-588)4126141-0 gnd rswk-swf
Differentialgleichung mit nacheilendem Argument (DE-588)4199298-2 gnd rswk-swf
Nichtlineare Optimierung (DE-588)4128192-5 gnd rswk-swf
Synchronisierung (DE-588)4130847-5 gnd rswk-swf
Zeitverzögertes System (DE-588)4780926-7 gnd rswk-swf
Differentialgleichung mit nacheilendem Argument (DE-588)4199298-2 s
Zeitverzögertes System (DE-588)4780926-7 s
Nichtlineare Dynamik (DE-588)4126141-0 s
Synchronisierung (DE-588)4130847-5 s
DE-604
Nichtlineare Optimierung (DE-588)4128192-5 s
1\p DE-604
Senthilkumar, Dharmapuri Vijayan Verfasser aut
X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3500791&prov=M&dok_var=1&dok_ext=htm Inhaltstext
DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=021158808&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis
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spellingShingle Lakshmanan, Muthuswamy 1946-
Senthilkumar, Dharmapuri Vijayan
Dynamics of nonlinear time-delay systems
Nichtlineare Dynamik (DE-588)4126141-0 gnd
Differentialgleichung mit nacheilendem Argument (DE-588)4199298-2 gnd
Nichtlineare Optimierung (DE-588)4128192-5 gnd
Synchronisierung (DE-588)4130847-5 gnd
Zeitverzögertes System (DE-588)4780926-7 gnd
subject_GND (DE-588)4126141-0
(DE-588)4199298-2
(DE-588)4128192-5
(DE-588)4130847-5
(DE-588)4780926-7
title Dynamics of nonlinear time-delay systems
title_auth Dynamics of nonlinear time-delay systems
title_exact_search Dynamics of nonlinear time-delay systems
title_full Dynamics of nonlinear time-delay systems M. Lakshmanan ; D. V. Senthilkumar
title_fullStr Dynamics of nonlinear time-delay systems M. Lakshmanan ; D. V. Senthilkumar
title_full_unstemmed Dynamics of nonlinear time-delay systems M. Lakshmanan ; D. V. Senthilkumar
title_short Dynamics of nonlinear time-delay systems
title_sort dynamics of nonlinear time delay systems
topic Nichtlineare Dynamik (DE-588)4126141-0 gnd
Differentialgleichung mit nacheilendem Argument (DE-588)4199298-2 gnd
Nichtlineare Optimierung (DE-588)4128192-5 gnd
Synchronisierung (DE-588)4130847-5 gnd
Zeitverzögertes System (DE-588)4780926-7 gnd
topic_facet Nichtlineare Dynamik
Differentialgleichung mit nacheilendem Argument
Nichtlineare Optimierung
Synchronisierung
Zeitverzögertes System
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