Introduction to physical modeling with Modelica:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boston, Mass. [u.a.]
Kluwer
2004
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Ausgabe: | 2. printing |
Schriftenreihe: | The Kluwer international series in engineering and computer science
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. [331] - 333 |
Beschreibung: | XXII, 344 S. graph. Darst. 1 CD-ROM (12 cm) |
ISBN: | 0792373677 |
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245 | 1 | 0 | |a Introduction to physical modeling with Modelica |c Michael Tiller |
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adam_text | CONTENTS LIST OF FIGURES IX LIST OF TABLES XIII PREFACE X I X
ACKNOWLEDGEMENTS XXI PART I THE MODELICA LANGUAGE 1 INTRODUCTION 3 1.1
WHAT IS MODELICA? 3 1.2 WHAT CAN MODELICA BE USED FOR? 6 1.3 MODELING
FORMALISMS 10 1.4 MODELICA STANDARD LIBRARY 13 1.5 BASIC VOCABULARY 13
1.6 SUMMARY 15 2 DIFFERENTIAL EQUATIONS 17 2.1 CONCEPTS 17 2.2
DIFFERENTIAL EQUATIONS 17 2.3 PHYSICAL TYPES 21 2.4 DOCUMENTING MODEIS
24 2.5 LANGUAGE FUNDAMENTALS 28 2.6 PROBLEMS 36 3 BUILDING AND
CONNECTING COMPONENTS 39 3.1 CONCEPTS 39 3.2 CONNECTORS 39 3.3 CREATING
CONNECTORS AND COMPONENTS 40 3.4 DEFMING A BLOCK 49 3.5 EXISTING
ROTATIONAL COMPONENTS 56 3.6 LANAUAAE FUNDAMENTALS 61 VI INTRODUCTION TO
PHYSICAL MODELING WITH MODELICA 3.7 SUMMARY 65 3.8 PROBLEMS 66 4
ENABLING REUSE 69 4.1 CONCEPTS 69 4.2 EXPLOITING COMMONALITY 70 4.3
REUSABLE BUILDING BLOCKS 71 4.4 ALLOWING REPLACEABLE COMPONENTS 75 4.5
OTHER REPLACEABLE ENTITIES 79 4.6 LIMITING FLEXIBILITY 82 4.7 OTHER
CONSIDERATIONS 84 4.8 LANGUAGE F UNDAMENTALS 85 4.9 PROBLEMS 88 5
FUNCTIONS 91 5.1 CONCEPTS 91 5.2 INTRODUCTION TO FUNCTIONS 92 5.3 AN
INTERPOLATION FUNCTION 94 5.4 MULTIPLE RETURN VALUES 96 5.5 PASSING
RECORDS AS ARGUMENTS 97 5.6 USING EXTERNAL SUBROUTINES 100 5.7 LANGUAGE
FUNDAMENTALS 102 5.8 PROBLEMS HO 6 USING ARRAYS 113 6.1 CONCEPTS 113 6.2
PLANETARY MOTION: ARRAYS OF COMPONENTS 113 6.3 SIMPLE ID HEAT TRANSFER:
ARRAYS OF VARIABLES 120 6.4 USING ARRAYS WITH CHEMICAL SYSTEMS 132 6.5
LANGUAGE FUNDAMENTALS 143 6.6 PROBLEMS 152 7 HYBRID MODELS 155 7.1
CONCEPTS 155 7.2 MODELING DIGITAL CIRCUITS 155 7.3 BOUNCING BALL 162 7.4
SENSOR MODELING 166 7.5 LANGUAGE FUNDAMENTALS 178 7.6 PROBLEMS 186 8
EXPLORING NONLINEAR BEHAVIOR 189 8.1 CONCEPTS 189 8.2 AN IDEAL DIODE 189
8.3 BACKLASH 193 8.4 THERMAL PROPERTIES 199 CONTENTS VII 8.5
HODGKIN-HUXLEY NERVE CELL MODEIS 203 8.6 LANGUAGE FUNDAMENTALS 206 8.7
PROBLEMS 210 9 MISCELLANEOUS 213 9.1 LOOKUP RULES 213 9.2 ANNOTATIONS
225 PART II EFFECTIVE MODELICA 10 MULTI-DOMAIN MODELING 231 10.1
CONCEPTS 231 10.2 CONVEYOR SYSTEM 231 10.3 RESIDENTIAL HEATING SYSTEM
236 10.4 AUTOMOTIVE LIBRARY 244 10.5 SUMMARY 252 10.6 PROBLEMS 253 11
BLOCK DIAGRAMS VS. ACAUSAL MODELING 255 11.1 OBJECTIVE 255 11.2 BLOCK
DIAGRAMS 256 11.3 ACAUSAL APPROACH 262 11.4 SUMMARY 263 11.5 PROBLEMS
264 12 BUILDING LIBRARIES 265 12.1 OBJECTIVE 265 12.2 CLASSIFICATION 265
12.3 STRUCTURE 266 12.4 DOCUMENTATION 271 12.5 MAXIMIZING REUSABILITY
272 12.6 MAXIMIZING ROBUSTNESS 274 12.7 STORAGE OF MODELICA SOURCE CODE
276 12.8 CONCLUSION 278 13 INITIAL CONDITIONS 279 13.1 OBJECTIVE 279
13.2 MATHEMATICAL FORMULATION 279 13.3 USING ATTRIBUTES 282 13.4 START
OF SIMULATION 283 13.5 INITIALIZATION BASED ON ANALVSIS TYPE 284 13.6
CONCLUSION 286 14 EFFICIENCY 287 14.1 OBJECTIVE 287 VIII INTRODUCTION TO
PHYSICAL MODELING WITH MODELICA 14.2 USE EQUATIONS 287 14.3 AVOID
UNNECESSARY EVENTS 288 14.4 TIME SCALES 288 14.5 PROVIDING JACOBIANS FOR
FUNCTIONS 289 14.6 CHOOSING THE PROPER INTEGRATION ROUTINE 292 14.7
TOLERANCES 292 14.8 VARIABLE ELIMINATION 293 14.9 CONCLUSION 294
APPENDICES 295 A-HISTORY OF MODELICA 295 A.L CONTRIBUTORS TO THE
MODELICA LANGUAGE 299 A.2 CONTRIBUTORS TO THE MODELICA STANDARD LIBRARY
300 B- MODELICA SYNTAX 30] C- MODELICA STANDARD LIBRARY: CONNECTORS 309
C.L ELECTRICAL (ANALOG) 309 C.2 BLOCK DIAGRAMS 310 C.3 TRANSLATIONAL
MOTION 312 C.4 ROTATIONAL MOTION 312 D- MODELICA STANDARD LIBRARY:
COMMON UNITS 315 D.L TIME AND SPACE 315 D.2 PERIODIC PHENOMENON 315 D.3
MECHANICS 316 D.4 THERMODYNAMICS 317 D.5 ELECTRICITY 318 D.6 PHYSICAL
CHEMISTRY 318 E- MODELICA STANDARD LIBRARY: CONSTANTS 321 F- MODELICA
STANDARD LIBRARY: MATH FUNCTIONS 323 F.L GEOMETRIE FUNCTIONS 323 F.2
INVERSE GEOMETRIC FUNCTIONS 323 F.3 HYPERBOLIC GEOMETRIC FUNCTIONS 323
F.4 EXPONENTIAL FUNCTIONS 323 GLOSSARY 324 REFERENCES 331 INDEX 33-7
|
adam_txt |
CONTENTS LIST OF FIGURES IX LIST OF TABLES XIII PREFACE X I X
ACKNOWLEDGEMENTS XXI PART I THE MODELICA LANGUAGE 1 INTRODUCTION 3 1.1
WHAT IS MODELICA? 3 1.2 WHAT CAN MODELICA BE USED FOR? 6 1.3 MODELING
FORMALISMS 10 1.4 MODELICA STANDARD LIBRARY 13 1.5 BASIC VOCABULARY 13
1.6 SUMMARY 15 2 DIFFERENTIAL EQUATIONS 17 2.1 CONCEPTS 17 2.2
DIFFERENTIAL EQUATIONS 17 2.3 PHYSICAL TYPES 21 2.4 DOCUMENTING MODEIS
24 2.5 LANGUAGE FUNDAMENTALS 28 2.6 PROBLEMS 36 3 BUILDING AND
CONNECTING COMPONENTS 39 3.1 CONCEPTS 39 3.2 CONNECTORS 39 3.3 CREATING
CONNECTORS AND COMPONENTS 40 3.4 DEFMING A BLOCK 49 3.5 EXISTING
ROTATIONAL COMPONENTS 56 3.6 LANAUAAE FUNDAMENTALS 61 VI INTRODUCTION TO
PHYSICAL MODELING WITH MODELICA 3.7 SUMMARY 65 3.8 PROBLEMS 66 4
ENABLING REUSE 69 4.1 CONCEPTS 69 4.2 EXPLOITING COMMONALITY 70 4.3
REUSABLE BUILDING BLOCKS 71 4.4 ALLOWING REPLACEABLE COMPONENTS 75 4.5
OTHER REPLACEABLE ENTITIES 79 4.6 LIMITING FLEXIBILITY 82 4.7 OTHER
CONSIDERATIONS 84 4.8 LANGUAGE F'UNDAMENTALS 85 4.9 PROBLEMS 88 5
FUNCTIONS 91 5.1 CONCEPTS 91 5.2 INTRODUCTION TO FUNCTIONS 92 5.3 AN
INTERPOLATION FUNCTION 94 5.4 MULTIPLE RETURN VALUES 96 5.5 PASSING
RECORDS AS ARGUMENTS 97 5.6 USING EXTERNAL SUBROUTINES 100 5.7 LANGUAGE
FUNDAMENTALS 102 5.8 PROBLEMS HO 6 USING ARRAYS 113 6.1 CONCEPTS 113 6.2
PLANETARY MOTION: ARRAYS OF COMPONENTS 113 6.3 SIMPLE ID HEAT TRANSFER:
ARRAYS OF VARIABLES 120 6.4 USING ARRAYS WITH CHEMICAL SYSTEMS 132 6.5
LANGUAGE FUNDAMENTALS 143 6.6 PROBLEMS 152 7 HYBRID MODELS 155 7.1
CONCEPTS 155 7.2 MODELING DIGITAL CIRCUITS 155 7.3 BOUNCING BALL 162 7.4
SENSOR MODELING 166 7.5 LANGUAGE FUNDAMENTALS 178 7.6 PROBLEMS 186 8
EXPLORING NONLINEAR BEHAVIOR 189 8.1 CONCEPTS 189 8.2 AN IDEAL DIODE 189
8.3 BACKLASH 193 8.4 THERMAL PROPERTIES 199 CONTENTS VII 8.5
HODGKIN-HUXLEY NERVE CELL MODEIS 203 8.6 LANGUAGE FUNDAMENTALS 206 8.7
PROBLEMS 210 9 MISCELLANEOUS 213 9.1 LOOKUP RULES 213 9.2 ANNOTATIONS
225 PART II EFFECTIVE MODELICA 10 MULTI-DOMAIN MODELING 231 10.1
CONCEPTS 231 10.2 CONVEYOR SYSTEM 231 10.3 RESIDENTIAL HEATING SYSTEM
236 10.4 AUTOMOTIVE LIBRARY 244 10.5 SUMMARY 252 10.6 PROBLEMS 253 11
BLOCK DIAGRAMS VS. ACAUSAL MODELING 255 11.1 OBJECTIVE 255 11.2 BLOCK
DIAGRAMS 256 11.3 ACAUSAL APPROACH 262 11.4 SUMMARY 263 11.5 PROBLEMS
264 12 BUILDING LIBRARIES 265 12.1 OBJECTIVE 265 12.2 CLASSIFICATION 265
12.3 STRUCTURE 266 12.4 DOCUMENTATION 271 12.5 MAXIMIZING REUSABILITY
272 12.6 MAXIMIZING ROBUSTNESS 274 12.7 STORAGE OF MODELICA SOURCE CODE
276 12.8 CONCLUSION 278 13 INITIAL CONDITIONS 279 13.1 OBJECTIVE 279
13.2 MATHEMATICAL FORMULATION 279 13.3 USING ATTRIBUTES 282 13.4 START
OF SIMULATION 283 13.5 INITIALIZATION BASED ON ANALVSIS TYPE 284 13.6
CONCLUSION 286 14 EFFICIENCY 287 14.1 OBJECTIVE 287 VIII INTRODUCTION TO
PHYSICAL MODELING WITH MODELICA 14.2 USE EQUATIONS 287 14.3 AVOID
UNNECESSARY EVENTS 288 14.4 TIME SCALES 288 14.5 PROVIDING JACOBIANS FOR
FUNCTIONS 289 14.6 CHOOSING THE PROPER INTEGRATION ROUTINE 292 14.7
TOLERANCES 292 14.8 VARIABLE ELIMINATION 293 14.9 CONCLUSION 294
APPENDICES 295 A-HISTORY OF MODELICA 295 A.L CONTRIBUTORS TO THE
MODELICA LANGUAGE 299 A.2 CONTRIBUTORS TO THE MODELICA STANDARD LIBRARY
300 B- MODELICA SYNTAX 30] C- MODELICA STANDARD LIBRARY: CONNECTORS 309
C.L ELECTRICAL (ANALOG) 309 C.2 BLOCK DIAGRAMS 310 C.3 TRANSLATIONAL
MOTION 312 C.4 ROTATIONAL MOTION 312 D- MODELICA STANDARD LIBRARY:
COMMON UNITS 315 D.L TIME AND SPACE 315 D.2 PERIODIC PHENOMENON 315 D.3
MECHANICS 316 D.4 THERMODYNAMICS 317 D.5 ELECTRICITY 318 D.6 PHYSICAL
CHEMISTRY 318 E- MODELICA STANDARD LIBRARY: CONSTANTS 321 F- MODELICA
STANDARD LIBRARY: MATH FUNCTIONS 323 F.L GEOMETRIE FUNCTIONS 323 F.2
INVERSE GEOMETRIC FUNCTIONS 323 F.3 HYPERBOLIC GEOMETRIC FUNCTIONS 323
F.4 EXPONENTIAL FUNCTIONS 323 GLOSSARY 324 REFERENCES 331 INDEX 33-7 |
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spelling | Tiller, Michael Verfasser aut Introduction to physical modeling with Modelica Michael Tiller 2. printing Boston, Mass. [u.a.] Kluwer 2004 XXII, 344 S. graph. Darst. 1 CD-ROM (12 cm) txt rdacontent n rdamedia nc rdacarrier The Kluwer international series in engineering and computer science Literaturverz. S. [331] - 333 Computersimulation (DE-588)4148259-1 gnd rswk-swf Objektorientierte Analyse (DE-588)4504809-5 gnd rswk-swf Modelica (DE-588)4657257-0 gnd rswk-swf (DE-588)4151278-9 Einführung gnd-content Computersimulation (DE-588)4148259-1 s DE-604 Objektorientierte Analyse (DE-588)4504809-5 s Modelica (DE-588)4657257-0 s GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015198891&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Tiller, Michael Introduction to physical modeling with Modelica Computersimulation (DE-588)4148259-1 gnd Objektorientierte Analyse (DE-588)4504809-5 gnd Modelica (DE-588)4657257-0 gnd |
subject_GND | (DE-588)4148259-1 (DE-588)4504809-5 (DE-588)4657257-0 (DE-588)4151278-9 |
title | Introduction to physical modeling with Modelica |
title_auth | Introduction to physical modeling with Modelica |
title_exact_search | Introduction to physical modeling with Modelica |
title_exact_search_txtP | Introduction to physical modeling with Modelica |
title_full | Introduction to physical modeling with Modelica Michael Tiller |
title_fullStr | Introduction to physical modeling with Modelica Michael Tiller |
title_full_unstemmed | Introduction to physical modeling with Modelica Michael Tiller |
title_short | Introduction to physical modeling with Modelica |
title_sort | introduction to physical modeling with modelica |
topic | Computersimulation (DE-588)4148259-1 gnd Objektorientierte Analyse (DE-588)4504809-5 gnd Modelica (DE-588)4657257-0 gnd |
topic_facet | Computersimulation Objektorientierte Analyse Modelica Einführung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015198891&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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