Handbook of chaos control:
Gespeichert in:
Späterer Titel: | Handbook of chaos control / Eckehard Schöll... |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim [u.a.]
Wiley-VCH
1999
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Ausgabe: | 1. Aufl. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XV, 691 S. Ill., graph. Darst. |
ISBN: | 3527294368 |
Internformat
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245 | 1 | 0 | |a Handbook of chaos control |c Heinz G. Schuster (ed.) |
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264 | 1 | |a Weinheim [u.a.] |b Wiley-VCH |c 1999 | |
300 | |a XV, 691 S. |b Ill., graph. Darst. | ||
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337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 7 | |a Chaos (théorie des systèmes) |2 ram | |
650 | 4 | |a Chaotic behavior in systems | |
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Datensatz im Suchindex
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adam_text | HEINZ G. SCHUSTER (ED.) HANDBOOK OF CHAOS CONTROL WILEY-VCH WEINHEIM *
NEW YORK * CHICHESTER * BRISBANE * SINGAPORE * TORONTO CONTENTS THEORY
OF CHAOS CONTROL 1 CONTROLLING CHAOS 1 1.1 INTRODUCTION 1 1.2 A
ONE-DIMENSIONAL EXAMPLE 2 1.3 CONTROLLING CHAOS IN TWO DIMENSIONS 4
1.3.1 STABILIZING A FIXED POINT 5 1.3.2 STABILIZING A PERIODIC ORBIT OF
HIGHER PERIOD 11 1.4 POLE PLACEMENT METHOD OF CONTROLLING CHAOS IN HIGH
DIMENSIONS ... 13 1.5 USE OF DELAY COORDINATES 16 1.6 DISCUSSIONS 17
THEORY OF CHAOS CONTROL 2 PRINCIPLES OF TIME DELAYED FEEDBACK CONTROL 21
2.1 INTRODUCTION 21 2.2 MECHANISM OF DELAYED FEEDBACK CONTROL 22 2.3
LIMITS OF THE SIMPLE FEEDBACK METHOD 27 2.4 ADVANCED CONTROL STRATEGIES
31 2.5 INFLUENCE OF A DELAY MISMATCH 34 2.6 SUMMARY 38 3 CONTROL OF
PATTERNS AND SPATIOTEMPORAL CHAOS AND ITS APPLICA- TIONS 43 3.1
INTRODUCTION 43 3.2 SUPPRESSING SPATIOTEMPORAL CHAOS IN CML SYSTEMS 46
3.3 PATTERN CONTROL IN ONE-WAY COUPLED CML SYSTEMS 57 VIII CONTENTS 3.4
APPLICATIONS OF PATTERN CONTROL AND CHAOS SYNCHRONIZATION IN SPA-
TIOTEMPORAL SYSTEMS 68 4 CONTROL OF SPATIALLY EXTENDED CHAOTIC SYSTEMS
87 4.1 INTRODUCTION 87 4.2 CONTROL PARAMETERS 89 4.2.1 CONDITIONS FOR
CONTROL 89 4.2.2 SYMMETRY, LOCALITY AND PINNING CONTROL 90 4.2.3
PERIODIC ARRAY OF PINNINGS 92 4.3 STEADY STATE CONTROL 94 4.4 CONTROL IN
THE PRESENCE OF NOISE 98 4.5 CONTROL OF PERIODIC ORBITS 101 4.6 STATE
RECONSTRUCTION 103 4.7 DENSITY OF PINNINGS 107 4.7.1 LATTICE
PARTITIONING 107 4.7.2 STATE FEEDBACK 108 4.7.3 OUTPUT FEEDBACK 113 4.8
SUMMARY 115 5 TOPOLOGICAL DEFECTS AND CONTROL OF SPATIO-TEMPORAL CHAOS
119 5.1 INTRODUCTION 119 5.2 COMPLEX GINZBURG-LANDAU EQUATION AND ITS
BASIC SOLUTIONS 121 5.3 STABILITY OF BASIC SOLUTIONS 125 5.3.1 STABILITY
OF PLANE WAVES 125 5.3.2 ABSOLUTE VERSUS CONVECTIVE INSTABILITY OF
TRAVELING WAVES . . 125 5.3.3 STABILITY OF TOPOLOGICAL DEFECTS IN ONE
AND TWO DIMENSIONS . . 126 5.4 CONTROL OF CHAOS IN THE COMPLEX
GINZBURG-LANDAU EQUATION . . . . 129 5.4.1 ONE-DIMENSIONAL SITUATION.
CONTROL OF THE HOLE SOLUTION . . . 129 5.4.2 CONTROL OF SPIRAL IN THE
TWO-DIMENSIONAL COMPLEX COMPLEX GINZBURG-LANDAU EQUATION 132 5.5 CONTROL
OF SPATIO-TEMPORAL CHAOS IN REACTION-DIFFUSION SYSTEMS . . 134 5.6
CONCLUSION 136 6 TARGETING IN CHAOTIC DYNAMICAL SYSTEMS 141 6.1
INTRODUCTION 141 6.2 AN OUTLINE OF TARGETING ALGORITHMS 142 6.3 THE
TREE-TARGETING ALGORITHM 148 6.4 RESULTS 150 6.5 CONCLUSIONS 154 7 USING
CHAOTIC SENSITIVITY 157 7.1 HISTORICAL SETTING 157 7.2 TARGETING 159
7.2.1 BACKGROUND 159 7.2.2 USING CHAOTIC SENSITIVITY 160 CONTENTS IX
7.2.3 IMPLEMENTATIONS: LORENZ ATTRACTOR 160 7.2.4 IMPLEMENTATIONS:
HIGHER DIMENSIONALITY 164 7.2.5 TIME TO REACH TARGET 165 7.2.6 WHY
SEARCH FOR INTERSECTIONS? 167 7.2.7 EFFECTS OF NOISE AND MODELING ERRORS
169 7.2.8 EXPERIMENTAL VERIFICATION 170 7.3 OUTLOOK 176 8 CONTROLLING
TRANSIENT CHAOS ON CHAOTIC SADDLES 181 8.1 INTRODUCTION 181 8.2
PROPERTIES OF CHAOTIC SADDLES 182 8.3 THE BASIC IDEA FOR CONTROLLING
CHAOTIC SADDLES 185 8.4 COMPARISON WITH CONTROLLING PERMANENT CHAOS 187
8.5 CROSSOVER AROUND CRISES 188 8.6 CONTROLLING MOTION ON FRACTAL BASIN
BOUNDARIES 189 8.7 CONTROLLING CHAOTIC SCATTERING 189 8.8 AN IMPROVED
CONTROL OF CHAOTIC SADDLES 191 8.9 DISCUSSIONS 196 9 PERIODIC ORBIT
THEORY FOR CLASSICAL CHAOTIC SYSTEMS 205 9.1 INTRODUCTION 205 9.2
STRANGE REPELLERS AND CYCLE EXPANSIONS 206 9.3 RECYCLING MEASURE OF
CHAOS 212 9.4 PERIODIC ORBIT-THEORY OF DETERMINISTIC DIFFUSION 215 9.5
THE INCLUSION OF MARGINAL FIXED POINTS 219 9.4 CONCLUSIONS 225
APPLICATION OF CHAOS CONTROL 10 SYNCHRONIZATION IN CHAOTIC SYSTEMS,
CONCEPTS AND APPLICATIONS 229 10.1 INTRODUCTION AND MOTIVATION 229 10.2
THE GEOMETRY OF SYNCHRONIZATION 230 10.2.1 SIMPLE EXAMPLES 230 10.2.2
SOME GENERALIZATIONS AND A DEFINITION OF IDENTICAL SYNCHRO- NIZATION 231
10.3 THE DYNAMICS OF SYNCHRONIZATION 232 10.3.1 STABILITY AND THE
TRANSVERSE MANIFOLD 232 10.3.2 SYNCHRONIZING CHAOTIC SYSTEMS, VARIATIONS
ON THEMES . . . . 235 10.4 SYNCHRONOUS CIRCUITS AND APPLICATIONS 239
10.5 STABILITY AND BIFURCATIONS OF SYNCHRONIZED, MUTUALLY COUPLED
CHAOTIC SYSTEMS 245 X CONTENTS 10.5.1 STABILITY FOR COUPLED, CHAOTIC
SYSTEMS 245 10.5.2 COUPLING THRESHOLDS FOR SYNCHRONIZED CHAOS AND
BURSTING . 247 10.5.3 DESYNCHRONIZATION THRESHOLDS AT INCREASED COUPLING
. . . . 249 10.5.4 SIZE LIMITS ON CERTAIN CHAOTIC SYNCHRONIZED ARRAYS
251 10.5.5 RIDDLED BASINS OF SYNCHRONIZATION 252 10.6 TRANSFORMATIONS,
SYNCHRONIZATION, AND GENERALIZED SYNCHRONIZATION 255 10.6.1
SYNCHRONIZING WITH FUNCTIONS OF THE DYNAMICAL VARIABLES . .256 10.6.2
HYPERCHAOS SYNCHRONIZATION 257 10.6.3 GENERALIZED SYNCHRONIZATION 259 11
SYNCHRONIZATION OF CHAOTIC SYSTEMS 271 11.1 INTRODUCTION 271 11.2
SYNCHRONIZATION OF IDENTICAL SYSTEMS 274 11.2.1 CONSTRUCTING PAIRS OF
SYNCHRONIZING SYSTEMS 275 11.3 TRANSVERSAL INSTABILITIES AND NOISE 278
11.4 SPORADIC DRIVING 281 11.5 SPATIALLY EXTENDED SYSTEMS 284 11.6
SYNCHRONIZATION OF NONIDENTICAL SYSTEMS 286 11.6.1 GENERALIZED
SYNCHRONIZATION I 286 11.6.2 GENERALIZED SYNCHRONIZATION II 289 11.6.3
NON-IDENTICAL SYNCHRONIZATION OF IDENTICAL SYSTEMS 290 11.6.4 PHASE
SYNCHRONIZATION 292 11.7 APPLICATIONS AND CONCLUSION 293 12 PHASE
SYNCHRONIZATION OF REGULAER AND CHAOTIC OSCILLATORS 305 12.1 INTRODUCTION
305 12.2 SYNCHRONIZATION OF PERIODIC OSCILLATIONS 306 12.3 PHASE OF A
CHAOTIC OSCILLATOR 309 12.3.1 DEFINITION OF THE PHASE 309 12.3.2
DYNAMICS OF THE PHASE OF CHAOTIC OSCILLATIONS 311 12.4 PHASE
SYNCHRONIZATION BY EXTERNAL FORCE 312 12.4.1 SYNCHRONIZATION REGION 312
12.4.2 STATISTICAL APPROACH 313 12.4.3 INTERPRETATION THROUGH EMBEDDED
PERIODIC ORBITS 314 12.5 PHASE SYNCHRONIZATION IN COUPLED SYSTEMS 318
12.5.1 SYNCHRONIZATION OF TWO INTERACTING OSCILLATORS 318 12.5.2
SYNCHRONIZATION IN A POPULATION OF GLOBALLY COUPLED CHAOTIC OSCILLATORS
320 12.6 LATTICE OF CHAOTIC OSCILLATORS 321 12.7 SYNCHRONIZATION OF
SPACE-TIME CHAOS 322 12.8 DETECTING SYNCHRONIZATION IN DATA 322 12.9
CONCLUSIONS 323 CONTENTS XI 13 TOOLS FOR DETECTING AND ANALYZING
GENERALIZED SYNCHRONIZATION OF CHAOS IN EXPERIMENT 329 13.1 INTRODUCTION
329 13.2 GENERALIZED SYNCHRONIZATION OF CHAOS 331 13.3 WEAK AND STRONG
SYNCHRONIZATION 332 13.3.1 PROPERTIES OF THE SYNCHRONIZATION MANIFOLD
332 13.3.2 NUMERICAL EXAMPLES 334 13.4 ON-OFF INTERMITTENCY 339 13.5
TIME SERIES ANALYSIS 344 13.5.1 ALGORITHM FOR ESTIMATING CLES 345 13.5.2
EXAMPLES 348 13.6 EXPERIMENTAL EXAMPLES 350 13.6.1 ONE-WAY COUPLED
DOUBLE-SCROLL OSCILLATORS 350 13.6.2 DOUBLE-SCROLL OSCILLATOR DRIVEN
WITH THE MACKEY-GLASS SYSTEM357 13.7 CONCLUSIONS 359 14 CONTROLLING
CHAOS IN A HIGHDIMENSIONAL CONTINUOUS SPATIOTEM- PORAL MODEL 365 14.1
INTRODUCTION 365 14.2 EL NINO S DYNAMICS AND CHAOS 366 14.2.1 EL NINO S
DYNAMICS 367 14.2.2 EL NINO S CHAOS 368 14.2.3 MODEL DESCRIPTION 371
14.3 CHOOSING A CONTROL VARIABLE AND A CONTROL POINT IN SPACE 373 14.4 A
CONTINUOUS DELAY-COORDINATES PHASE SPACE APPROACH TO CONTROLLING CHAOS
IN HIGH DIMENSIONAL, SPATIOTEMPORAL SYSTEMS 375 14.5 CONTROLLABILITY OF
DELAY-COORDINATE PHASE SPACE POINTS ALONG AN UN- STABLE PERIODIC ORBIT
377 14.6 RESULTS 378 14.7 USING NON-DELAY COORDINATES FOR PHASE SPACE
RECONSTRUCTION 381 14.8 CONCLUSIONS 383 15 CONTROLLING PRODUCTION LINES
387 15.1 INTRODUCTION 387 15.2 TSS PRODUCTION LINES AND THEIR MODEL 389
15.3 DYNAMICS OF TSS LINES 392 15.4 A SELF-ORGANIZED ORDER PICKING
SYSTEM FOR A WAREHOUSE 399 15.5 OPTIMIZING PERFORMANCE 401 15.6
CONCLUDING REMARKS 401 16 CHAOS CONTROL IN BIOLOGICAL NETWORKS 405 16.1
INTRODUCTION 405 16.2 CONTROL OF A DELAY DIFFERENTIAL EQUATION 406 16.3
CONTROL OF CHAOS IN A NETWORK OF OSCILLATORS 408 16.3.1 THE MODEL 408
XII CONTENTS 16.4 CHAOTIC CATEGORIZER 411 16.4.1 STATIC PATTERN
DISCRIMINATION 415 16.4.2 SYMBOL RECOGNITION 415 16.4.3 MOTION DETECTION
416 16.5 CHAOS CONTROL IN BIOLOGICAL NEURAL NETWORKS 418 16.6 CONTROL IN
FOURIER SPACE 421 16.7 DISCUSSION 424 17 CHAOS CONTROL IN BIOLOGICAL
SYSTEMS 427 17.1 INTRODUCTION 427 17.2 CARDIAC DYNAMICS 428 17.2.1
INTRODUCTION TO VENTRICULAR FIBRILLATION 428 17.2.2 FIBRILLATION AS A
DYNAMICAL STATE 428 17.2.3 DETECTION OF DETERMINISTIC DYNAMICS IN CANINE
VENTRICULAR FIB- RILLATION 429 17.2.4 IMAGING OF THE SPATIOTEMPORAL
EVOLUTION OF VENTRICULAR FIBRIL- LATION 431 17.3 CONTROL OF CHAOS IN
CARDIAC SYSTEMS 436 17.3.1 CONTROL OF ISOLATED CARDIAC TISSUE 436 17.3.2
CONTROL OF ATRIAL FIBRILLATION IN HUMANS 441 17.4 CONTROL OF CHAOS IN
BRAIN TISSUE 448 17.5 DC FIELD INTERACTIONS WITH MAMMALIAN NEURONAL
TISSUE 448 17.6 SUMMARY 453 EXPERIMENTAL CONTROL OF CHAOS 18
EXPERIMENTAL CONTROL OF CHAOS IN ELECTRONIC CIRCUITS 459 18.1
INTRODUCTION 459 18.2 THE OPF METHOD 460 18.2.1 CIRCUIT IMPLEMENTATION
464 18.2.2 CONTROLLING THE DIODE RESONATOR 464 18.3 CONTROLLING COUPLED
DIODE RESONATORS 468 18.3.1 ON HIGHER DIMENSIONAL CONTROL 470 18.4
CONTROLLING SPATIOTEMPORAL CHAOS 473 18.4.1 OPEN FLOW SYSTEMS 475 18.4.2
THE DIODE RESONATOR OPEN FLOW SYSTEM 476 18.4.3 CONTROL 477 18.5
CONCLUSIONS 483 CONTENTS XIII 19 CONTROLLING LASER CHAOS 487 19.1
INTRODUCTION 487 19.2 CLASS B LASERS 488 19.2.1 THE SINGLE MODE CLASS B
LASER 488 19.2.2 CLASS B LASERS WITH MODULATED PARAMETERS 490 19.2.3 CO2
LASER WITH ELECTRONIC FEEDBACK 491 19.2.4 CLASS B LASERS WITH SATURABLE
ABSORBER 491 19.2.5 MULTIMODE CLASS B LASERS WITH INTRACAVITY SECOND
HARMONIC GENERATION 492 19.2.6 CLASS B LASERS IN PRESENCE OF FEEDBACK
493 19.3 FEEDBACK METHODS OF CONTROLLING CHAOS 493 19.3.1 BASIC
INGREDIENTS OF CHAOS CONTROL 493 19.3.2 EXPERIMENTAL IMPLEMENTATION OF
CONTROL 495 19.3.3 DELAYED FEEDBACK CONTROL OF CHAOS 499 19.4
STABILIZATION OF UNSTABLE STEADY STATES 500 19.5 NONFEEDBACK CONTROL OF
CHAOS 503 19.5.1 INVASIVE VS NONINVASIVE METHODS 503 19.5.2 PHASE
CONTROL 503 19.6 APPLICATIONS OF CONTROLLING LASER CHAOS 505 19.6.1
ENLARGEMENT OF THE RAENGE OF CW OPERATION 506 19.6.2 FLOQUET MULTIPLIERS
AND MANIFOLD CONNECTIONS 506 19.7 CONCLUSION 508 20 CONTROL OF CHAOS IN
PLASMAS 513 20.1 INTRODUCTION 513 20.2 SOME BASIC CONCEPTS 514 20.2.1
OVERVIEW OVER COMMON CHAOS CONTROL SCHEMES 514 20.2.2 OPEN-LOOP CONTROL
516 20.2.3 CLOSED-LOOP CONTROL 518 20.3 PLASMA DIODES 523 20.3.1 THE
PIERCE-DIODE 524 20.3.2 THE THERMIONIC-DIODE 531 20.4 IONIZATION WAVES
539 20.4.1 BASIC THEORY 539 20.4.2 EXPERIMENT AND TRANSITION TO CHAOS
541 20.4.3 CONTROL OF IONIZATION WAVE CHAOS 543 20.5 TAMING TURBULENCE
550 20.6 SUMMARY AND OUTLOOK 554 21 CHAOS CONTROL IN SPIN SYSTEMS 563
21.1 INTRODUCTION 563 21.2 FERROMAGNETIC RESONANCE IN SPIN-WAVE
INSTABILITIES 565 21.2.1 EXPERIMENTAL SET-UP 565 21.2.2 OBSERVED
PHENOMENA 566 21.2.3 ROUTES TO CHAOS 567 XIV CONTENTS 21.3 NONRESONANT
PARAMETRIC MODULATION 569 21.3.1 ANALYTICAL AND NUMERICAL APPROACH 569
21.3.2 EXPERIMENTAL SUPPRESSION OF SPIN-WAVE CHAOS 571 21.4 OCCASIONAL
PROPORTIONAL FEEDBACK 574 21.4.1 THE OGY CONCEPT 574 21.4.2 EXPERIMENTAL
CONTROL BY AN ANALOG FEEDBACK DEVICE 576 21.5 TIME-DELAYED FEEDBACK
CONTROL 578 21.5.1 PRINCIPLES OF CONTROL 578 21.5.2 APPLICATION TO
SPIN-WAVE CHAOS 583 21.6 CONCLUSIONS 585 22 CONTROL OF CHEMICAL WAVES IN
EXCITABLE MEDIA BY EXTERNAL PER- TURBATION 591 22.1 INTRODUCTION 591
22.2 SPIRAL WAVES AND THE BELOUSOV-ZHABOTINSKY REACTION 592 22.3
EXTERNAL CONTROL 596 22.3.1 CHEMICAL PARAMETERS AND OXYGEN-INHIBITION
596 22.3.2 CONTROL BY ELECTRIC FIELDS 598 22.3.3 CONTROL BY LIGHT 603
22.4 CONCLUSIONS 610 23 PREDICTABILITY AND LOCAL CONTROL OF
LOW-DIMENSIONAL CHAOS 615 23.1 INTRODUCTION 615 23.2 A DEFINITION OF
PREDICTABILITY 616 23.3 EFFECTIVE LYAPUNOV EXPONENTS 618 23.4 UNSTABLE
PERIODIC ORBITS 623 23.5 THE ORIGIN OF PREDICTABILITY CONTOURS 624 23.6
CHAOS CONTROL IN THE PRESENCE OF LARGE EFFECTIVE LYAPUNOV EXPONENTS 629
23.6.1 THE LOCAL ENTROPY ALGORITHM 630 23.6.1 EXPERIMENTAL RESULTS 631
23.7 ADAPTIVE ORBIT CORRECTION IN CHAOS CONTROL 634 23.7.1 ORBIT
CORRECTIONS IN THE HENON MAP 635 23.7.2 ORBIT CORRECTIONS IN A CHANGING
ENVIRONMENT 636 23.7.3 EXPERIMENTAL ORBIT CORRECTION AT THE DRIVEN
PENDULUM . . . . 637 23.7.4 INTERACTION OF PREDICTION AND CONTROL,
OUTLOOK 638 24 EXPERIMENTAL CONTROL OF HIGHLY UNSTABLE SYSTEMS USING
TIME DELAY COORDINATES 645 24.1 INTRODUCTION 645 24.2 THE OGY CONTROL
SCHEME 648 24.3 EXTENSIONS OF THE OGY-CONTROL METHOD 649 24.3.1
QUASICONTINUOUS CONTROL FOR HIGHLY UNSTABLE SYSTEMS 649 24.3.2 THE OGY
CONTROL METHOD FOR TIME DELAY COORDINATES 652 24.4 QUASICONTINUOUS
CONTROL USING TIME DELAY COORDINATES 654 24.4.1 LOCAL DYNAMICS IN THE
TIME DELAY EMBEDDING SYSTEM 654 CONTENTS XV 24.4.2 QUASICONTINUOUS
CONTROL FORMULA FOR TIME DELAY COORDINATES . 656 24.5 THE BRONZE RIBBON
- EXPERIMENTAL SETUP 659 24.6 CONTROL VECTORS FROM SCALAR MEASUREMENTS
662 24.6.1 UNSTABLE PERIODIC ORBITS FROM RECURRENT POINTS 663 24.6.2
LINEAR DYNAMICS OF THE UNPERTURBED SYSTEM 663 24.6.3 DEPENDENCE ON THE
CONTROL PARAMETER 668 24.6.4 THE ADAPTIVE ORBIT CORRECTION 669 24.7
CONTROL EXPERIMENTS - THE BRONZE RIBBON 672 24.7.1 QUASICONTINUOUS
CONTROL OF THE BRONZE RIBBON WITH TIME DELAY COORDINATES 672 24.7.2
TRACKING OF THE BRONZE RIBBON EXPERIMENT 675 24.7 SUMMARY AND
CONCLUSIONS 680 INDEX 687
|
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author_GND | (DE-588)115496114 |
building | Verbundindex |
bvnumber | BV012329337 |
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callnumber-sort | QA 3402.35 |
callnumber-subject | QA - Mathematics |
classification_rvk | SK 810 UF 1950 UG 3900 |
classification_tum | MAT 587f |
ctrlnum | (OCoLC)845171630 (DE-599)BVBBV012329337 |
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discipline | Physik Informatik Mathematik |
edition | 1. Aufl. |
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id | DE-604.BV012329337 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:25:41Z |
institution | BVB |
isbn | 3527294368 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-008359994 |
oclc_num | 845171630 |
open_access_boolean | |
owner | DE-19 DE-BY-UBM DE-384 DE-1051 DE-703 DE-12 DE-355 DE-BY-UBR DE-523 DE-634 DE-83 DE-11 DE-188 |
owner_facet | DE-19 DE-BY-UBM DE-384 DE-1051 DE-703 DE-12 DE-355 DE-BY-UBR DE-523 DE-634 DE-83 DE-11 DE-188 |
physical | XV, 691 S. Ill., graph. Darst. |
publishDate | 1999 |
publishDateSearch | 1999 |
publishDateSort | 1999 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Handbook of chaos control Heinz G. Schuster (ed.) 1. Aufl. Weinheim [u.a.] Wiley-VCH 1999 XV, 691 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Chaos (théorie des systèmes) ram Chaotic behavior in systems Nonlinear control theory Kontrolltheorie (DE-588)4032317-1 gnd rswk-swf Steuerung (DE-588)4057472-6 gnd rswk-swf Chaotisches System (DE-588)4316104-2 gnd rswk-swf Chaostheorie (DE-588)4009754-7 gnd rswk-swf Chaotisches System (DE-588)4316104-2 s Steuerung (DE-588)4057472-6 s DE-604 Chaostheorie (DE-588)4009754-7 s Kontrolltheorie (DE-588)4032317-1 s Schuster, Heinz Georg 1943- Sonstige (DE-588)115496114 oth 2. Aufl. u.d.T. Handbook of chaos control / Eckehard Schöll... GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008359994&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Handbook of chaos control Chaos (théorie des systèmes) ram Chaotic behavior in systems Nonlinear control theory Kontrolltheorie (DE-588)4032317-1 gnd Steuerung (DE-588)4057472-6 gnd Chaotisches System (DE-588)4316104-2 gnd Chaostheorie (DE-588)4009754-7 gnd |
subject_GND | (DE-588)4032317-1 (DE-588)4057472-6 (DE-588)4316104-2 (DE-588)4009754-7 |
title | Handbook of chaos control |
title_auth | Handbook of chaos control |
title_exact_search | Handbook of chaos control |
title_full | Handbook of chaos control Heinz G. Schuster (ed.) |
title_fullStr | Handbook of chaos control Heinz G. Schuster (ed.) |
title_full_unstemmed | Handbook of chaos control Heinz G. Schuster (ed.) |
title_new | Handbook of chaos control / Eckehard Schöll... |
title_short | Handbook of chaos control |
title_sort | handbook of chaos control |
topic | Chaos (théorie des systèmes) ram Chaotic behavior in systems Nonlinear control theory Kontrolltheorie (DE-588)4032317-1 gnd Steuerung (DE-588)4057472-6 gnd Chaotisches System (DE-588)4316104-2 gnd Chaostheorie (DE-588)4009754-7 gnd |
topic_facet | Chaos (théorie des systèmes) Chaotic behavior in systems Nonlinear control theory Kontrolltheorie Steuerung Chaotisches System Chaostheorie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008359994&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT schusterheinzgeorg handbookofchaoscontrol |