Dynamic modeling and control of engineering systems

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Hauptverfasser: Kulakowski, Bohdan T. 1942-2006 (VerfasserIn), Gardner, John F. (VerfasserIn), Shearer, J. Lowen 1921-1992 (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Cambridge Cambridge Univ. Press 2014
Ausgabe:3. ed., 1. paperback ed.
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Datensatz im Suchindex

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adam_text This textbook is ideal for a course in Engineering System Dynamics and Controls. The work is a comprehensive treatment of the analysis of lumped-parameter physical systems. Starting with a discussion of mathematical models in general, and ordinary differential equations, the book covers input-output and state-space models, computer simulation, and modeling methods and techniques in mechanical, electrical, thermal, and fluid domains. Frequency-domain methods, transfer functions, and frequency response are covered in detail. The book concludes with a treatment of stability, feedback control (PID, lag-lead, root locus), and an introduction to discrete-time systems. This new edi- . _ tion features many new and expanded sections on such topics as Solving Stiff Systems, Operational Amplifiers, Electrohydraulic Servovalves, Using MATLAB® with Transfer Functions, Using MATLAB with Frequency Response, MATLAB Tutorial, and an expanded Simulink® Tutorial. The work has 40 percent more end-of-chapter exercises and 30 percent more examples. Bohdan T. Kulakowski, Ph.D. (1942-2006), was Professor of Mechanical Engineering at Pennsylvania State University. He was an internationally recognized expert in auto- matic control systems, computer simulations and control of industrial processes, systems dynamics, vehicle-road dynamic interaction, and transportation systems. His fuzzy-logic algorithm for avoiding skidding accidents was recognized in 2000 by Discover magazine as one of its top 10 technological innovations of the year. John F. Gardner is the Chair of the Mechanical and Biomedical Engineering Department at Boise State University, where he has been a faculty member since 2000. Before his appointment at Boise State, he was on the faculty of Pennsylvania State University in University Park, where his research in dynamic systems and controls led to publications in diverse fields from railroad freight car dynamics to adaptive control of artificial hearts. He pursues research in modeling and control of engineering and biological systems. J. Lowen Shearer (1921-1992) received his Sc.D. from the Massachusetts Institute of Technology. At MIT, between 1950 and 1963, he served as both group leader in the Dynamic Analysis Control Laboratory, and as a member of the mechanical engineering faculty. From 1963 until his retirement in 1985, he was on the faculty of Mechanical Engineering at Pennsylvania State University. Professor Shearer was a mem- ber of ASME’s Dynamic Systems and Control Division and received that group’s Rufus Oldenberger Award in 1983. In addition, he received the Donald P. Eckman Award (ISA, 1965), and the Richards Memorial Award (ASME, 1966). Contents, Preface page xi INTRODUCTION 1 1.1 Systems and System Models 1 t .2 System Elements, Their Characteristics, and the Role of Integration 4 Problems 9 MECHANICAL SYSTEMS 14 2.1 Introduction 14 2.2 Translational Mechanical Systems 16 2.3 Rotational-Mechanical Systems 30 2.4 Linearization 34 2.5 Synopsis 44 Problems 45 MATHEMATICAL MODELS 54 3.1 Introduction 54 3.2 Input-Output Models 55 3.3 State Models 61 3.4 Transition Between Input-Output and State Models 68 3.5 Nonlinearities in Input-Output and State Models 71 3.6 Synopsis 76 Problems 76 ANALYTICAL SOLUTIONS OF SYSTEM INPUT-OUTPUT EQUATIONS 81 4.1 Introduction 81 4.2 Analytical Solutions of Linear Differential Equations 82 4.3 First-Order Models 84 4.4 Second-Order Models 92 4.5 Third- and Higher-Order Models 106 4.6 Synopsis 109 Problems 111 NUMERICAL SOLUTIONS OF ORDINARY DIFFERENTIAL EQUATIONS 120 5.1 Introduction 120 5.2 Euler’s Method 121 5.3 More Accurate Methods 124 5.4 Integration Step Size 129 vii Contents 5.5 Systems of Differential Equations 133 5.6 Stiff Systems of Differential Equations 133 5.7 Synopsis 138 Problems 139 SIMULATION OF DYNAMIC SYSTEMS 141 6.1 Introduction 141 6.2 Simulation Block Diagrams 143 6.3 Building a Simulation 147 6.4 Studying a System with a Simulation 150 6.5 Simulation Case Study: Mechanical Snubber 157 6.6 Synopsis 164 Problems 165 ELECTRICAL SYSTEMS 168 7.1 Introduction 168 7.2 Diagrams, Symbols, and Circuit Laws 169 7.3 Elemental Diagrams, Equations, and Energy Storage 170 7.4 Analysis of Systems of Interacting Electrical Elements 175 7.5 Operational Amplifiers 179 7.6 Linear Time-Varying Electrical Elements 186 7.7 Synopsis 188 Problems 189 THERMAL SYSTEMS 198 8.1 Introduction 198 8.2 Basic Mechanisms of Heat Transfer 199 8.3 Lumped Models of Thermal Systems 202 8.4 Synopsis 212 Problems 213 FLUID SYSTEMS 219 9.1 Introduction 219 9.2 Fluid System Elements 220 9.3 Analysis of Fluid Systems 225 9.4 Electrohydraulic Servoactuator 228 9.5 Pneumatic Systems 235 9.6 Synopsis 243 Problems 244 MIXED SYSTEMS 249 10.1 Introduction 249 10.2 Energy-Converting Transducers and Devices 249 10.3 Signal-Converting Transducers 254 10.4 Application Examples 255 10.5 Synopsis 261 Problems 261 Contents IX SYSTEM TRANSFER FUNCTIONS 273 27Q 11.1 Introduction 11.2 Approach Based on System Response to Exponential Inputs 274 11.3 Approach Based on Laplace Transformation 276 11.4 Properties of System Transfer Functions 277 11.5 Transfer Functions of Multi-Input, Multi-Output Systems 283 11.6 Transfer Function Block-Diagram Algebra 11.7 MATLAB Representation of Transfer Function 293 9QO 11.8 Synposis Problems FREQUENCY ANALYSIS 302 12.1 Introduction 302 12.2 Frequency-Response Transfer Functions 302 12.3 Bode Diagrams 307 12.4 Relationship between Time Response and Frequency Response 314 12.5 Polar Plot Diagrams 317 12.6 Frequency-Domain Analysis with MATLAB 319 12.7 Synopsis 323 Problems 323 CLOSED-LOOP SYSTEMS AND SYSTEM STABILITY 329 13.1 Introduction 329 13.2 Basic Definitions and Terminology 332 13.3 Algebraic Stability Criteria 333 13.4 Nyquist Stability Criterion 338 13.5 Quantitative Measures of Stability 341 13.6 Root-Locus Method 344 13.7 MATLAB Tools for System Stability Analysis 349 13.8 Synopsis 351 Problems CONTROL SYSTEMS 356 14.1 Introduction 333 14.2 Steady-State Control Error 357 14.3 Steady-State Disturbance Sensitivity 14.4 Interrelation of Steady-State and Transient Considerations 364 14.5 Industrial Controllers 385 14.6 System Compensation 378 14.7 Synopsis 383 Problems 383 ANALYSIS OF DISCRETE-TIME SYSTEMS 389 15.1 Introduction 389 15.2 Mathematical Modeling 390 15.3 Sampling and Holding Devices 398 15.4 The z Transform 488 Contents 15.5 Pulse Transfer Function 405 15.6 Synopsis 407 Problems 408 DIGITAL CONTROL SYSTEMS 410 16.1 Introduction 410 16.2 Single-Loop Control Systems 410 16.3 Transient Performance 412 16.4 Steady-State Performance 418 16.5 Digital Controllers 421 16.6 Synopsis 423 Problems 424 APPENDIX 1. Fourier Series and the Fourier Transform 427 APPENDIX 2. Laplace Transforms 432 APPENDIX 3. MATLAB Tutorial 438 APPENDIX 4. Simulink Tutorial 463 Index 481
any_adam_object 1
author Kulakowski, Bohdan T. 1942-2006
Gardner, John F.
Shearer, J. Lowen 1921-1992
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Dynamic modeling and control of engineering systems Bohdan T. Kulakowski ; John F. Gardner ; J. Lowen Shearer
Dynamics modeling and control of engineering systems
3. ed., 1. paperback ed.
Cambridge Cambridge Univ. Press 2014
XII, 486 S. Ill., graph. Darst.
txt rdacontent
n rdamedia
nc rdacarrier
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Cover Title: Dynamics modeling and control of engineering systems
Ingenieurwissenschaften
Mathematisches Modell
Engineering Mathematical models Textbooks
Systems engineering Mathematical models Textbooks
Computersimulation (DE-588)4148259-1 gnd rswk-swf
Technisches System (DE-588)4126276-1 gnd rswk-swf
Dynamisches System (DE-588)4013396-5 gnd rswk-swf
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Gardner, John F. Verfasser aut
Shearer, J. Lowen 1921-1992 Verfasser (DE-588)133592332 aut
Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027766123&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Klappentext
Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027766123&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis
1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk
2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk
3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk
spellingShingle Kulakowski, Bohdan T. 1942-2006
Gardner, John F.
Shearer, J. Lowen 1921-1992
Dynamic modeling and control of engineering systems
Ingenieurwissenschaften
Mathematisches Modell
Engineering Mathematical models Textbooks
Systems engineering Mathematical models Textbooks
Computersimulation (DE-588)4148259-1 gnd
Technisches System (DE-588)4126276-1 gnd
Dynamisches System (DE-588)4013396-5 gnd
Mathematische Methode (DE-588)4155620-3 gnd
Mathematisches Modell (DE-588)4114528-8 gnd
Modellierung (DE-588)4170297-9 gnd
Simulation (DE-588)4055072-2 gnd
subject_GND (DE-588)4148259-1
(DE-588)4126276-1
(DE-588)4013396-5
(DE-588)4155620-3
(DE-588)4114528-8
(DE-588)4170297-9
(DE-588)4055072-2
(DE-588)4143389-0
title Dynamic modeling and control of engineering systems
title_alt Dynamics modeling and control of engineering systems
title_auth Dynamic modeling and control of engineering systems
title_exact_search Dynamic modeling and control of engineering systems
title_full Dynamic modeling and control of engineering systems Bohdan T. Kulakowski ; John F. Gardner ; J. Lowen Shearer
title_fullStr Dynamic modeling and control of engineering systems Bohdan T. Kulakowski ; John F. Gardner ; J. Lowen Shearer
title_full_unstemmed Dynamic modeling and control of engineering systems Bohdan T. Kulakowski ; John F. Gardner ; J. Lowen Shearer
title_short Dynamic modeling and control of engineering systems
title_sort dynamic modeling and control of engineering systems
topic Ingenieurwissenschaften
Mathematisches Modell
Engineering Mathematical models Textbooks
Systems engineering Mathematical models Textbooks
Computersimulation (DE-588)4148259-1 gnd
Technisches System (DE-588)4126276-1 gnd
Dynamisches System (DE-588)4013396-5 gnd
Mathematische Methode (DE-588)4155620-3 gnd
Mathematisches Modell (DE-588)4114528-8 gnd
Modellierung (DE-588)4170297-9 gnd
Simulation (DE-588)4055072-2 gnd
topic_facet Ingenieurwissenschaften
Mathematisches Modell
Engineering Mathematical models Textbooks
Systems engineering Mathematical models Textbooks
Computersimulation
Technisches System
Dynamisches System
Mathematische Methode
Modellierung
Simulation
Aufgabensammlung
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027766123&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027766123&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA
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AT shearerjlowen dynamicmodelingandcontrolofengineeringsystems
AT kulakowskibohdant dynamicsmodelingandcontrolofengineeringsystems
AT gardnerjohnf dynamicsmodelingandcontrolofengineeringsystems
AT shearerjlowen dynamicsmodelingandcontrolofengineeringsystems