Non-linear control based on physical models electrical, mechanical and hydraulic systems

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1. Verfasser: Kugi, Andreas 1967- (VerfasserIn)
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Sprache:English
Veröffentlicht: London [u.a.] Springer 2001
Schriftenreihe:Lecture notes in control and information sciences 260
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Datensatz im Suchindex

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adam_text ANDREAS KUGI NON-LINEAR CONTROL BASED ON PHYSICAL MODELS ELECTRICAL, MECHANICAL AND HYDRAULIC SYSTEMS WITH 47 FIGURES SPRINGER CONTENTS 1. FUNDAMENTALS 1 1.1 STABILITY OF EQUILIBRIA 1 1.1.1 PHYSICAL OBSERVATION I 2 1.1.2 MATHEMATICAL FORMULATION I: LYAPUNOV S DIRECT METHOD 3 1.1.3 PHYSICAL OBSERVATION II 3 1.1.4 MATHEMATICAL FORMULATION II: LASALLE S INVARIANCE PRIN- CIPLE 4 1.1.5 EXPONENTIAL STABILITY 6 1.2 DISSIPATIVITY, PASSIVITY AND POSITIVE REALNESS 6 1.2.1 PHYSICAL OBSERVATION III 6 1.2.2 MATHEMATICAL FORMULATION III: THE NOTION OF DISSIPA- TIVITY 10 1.2.3 PASSIVITY 11 1.2.4 POSITIVE REALNESS 14 1.3 ABSOLUTE STABILITY AND THE POPOV CRITERION 19 1.3.1 PHYSICAL OBSERVATION IV 19 1.3.2 MATHEMATICAL FORMULATION IV: THE NOTION OF ABSOLUTE STABILITY AND THE POPOV CRITERION 19 1.4 PCH-SYSTEMS AND PCHD-SYSTEMS 23 2. SOME NON-LINEAR CONTROL DESIGN STRATEGIES 27 2.1 NON-LINEAR STATE FEEDBACK IJ 2 -DESIGN 28 2.2 NON-LINEAR STATE FEEDBACK H 2 -DESIGN WITH INTEGRAL TERM .... 32 2.3 NON-LINEAR STATE FEEDBACK HOO-DESIGN 35 2.4 PASSIVITY-BASED CONTROL (PBC) 38 3. ELECTROMAGNETIC SYSTEMS 41 3.1 BASIC CIRCUIT RELATIONS 41 3.2 ENERGY BASED DESCRIPTION 44 3.2.1 INDEPENDENT SET OF INDUCTOR CURRENTS AND CAPACITOR VOLTAGES 44 3.2.2 DEPENDENT SET OF INDUCTOR CURRENTS AND CAPACITOR VOLTAGES 48 3.3 ENERGY BASED DESCRIPTION WITH FULL TOPOLOGICAL INFORMATION . 50 XIV CONTENTS 3.3.1 DISSIPATIVE ELECTRICAL SYSTEMS IN THE FORM OF A PCHD- SYSTEM 50 3.3.2 APPLICATION: SIMPLE ELECTRIC CIRCUIT 55 3.3.3 APPLICATION: THREE-PHASE POWER SYSTEM 57 3.4 PWM-CONTROLLED ELECTRICAL SYSTEMS 60 3.4.1 ENERGY BASED DESCRIPTION 60 3.4.2 ENERGY BASED DESCRIPTION WITH FULL TOPOLOGICAL INFOR- MATION 61 3.5 APPLICATION: NON-LINEAR CONTROL OF A CUK-CONVERTER 67 3.5.1 MATHEMATICAL MODEL 68 3.5.2 NON-LINEAR STATE FEEDBACK # 2 -DESIGN 69 3.5.3 NON-LINEAR STATE FEEDBACK I/ 2 -DESIGN WITH INTEGRAL TERM 70 3.5.4 THE EXPERIMENTAL SETUP : 72 3.5.5 MEASUREMENT AND SIMULATION RESULTS OF THE CLOSED-LOOP 77 3.6 ELECTROMECHANICAL SYSTEM: THE ENERGY/CO-ENERGY CONCEPT .. 79 3.6.1 SIMPLE APPLICATION: SPECIFIC INFLUENCE ON THE ELECTRO- STATIC/ELECTROMAGNETIC COUPLING FORCE 82 4. MECHANICAL PCH-SYSTEMS 85 4.1 FUNDAMENTALS OF LAGRANGIAN AND HAMILTONIAN SYSTEMS 86 4.1.1 THE FINITE-DIMENSIONAL CASE 86 4.1.2 THE INFINITE-DIMENSIONAL CASE 90 4.2 CONTROLLER DESIGN STRATEGIES 92 4.2.1 PRELIMINARIES 92 4.2.2 SOME REMARKS CONCERNING THE STABILITY OF INFINITE- DIMENSIONAL SYSTEMS 95 4.2.3 NON-LINEAR ^-DESIGN FOR PCH-SYSTEMS 95 4.2.4 NON-LINEAR HOO-DESIGN FOR PCH-SYSTEMS 97 4.2.5 PD-DESIGN FOR PCH-SYSTEMS 98 4.2.6 DISTURBANCE COMPENSATION FOR PCH-SYSTEMS 99 4.3 APPLICATION: CONTROL OF SMART PIEZOELECTRIC BEAM STRUCTURES . 100 4.3.1 PRELIMINARIES 101 4.3.2 BEAM STRUCTURE UNDER CONSIDERATION 103 4.3.3 ACTUATOR AND SENSOR DESIGN 104 4.3.4 MATHEMATICAL MODEL FOR THE BEAM WITH LATERAL LOADINGSL09 4.3.5 CONTROLLER DESIGN FOR THE BEAM WITH LATERAL LOADINGS 112 4.3.6 MATHEMATICAL MODEL FOR THE BEAM WITH AN AXIAL SUP- PORT MOTION 117 4.3.7 CONTROLLER DESIGN FOR THE BEAM WITH AN AXIAL SUPPORT MOTION 118 5. HYDRAULIC DRIVE SYSTEMS 121 5.1 VALVE-CONTROLLED TRANSLATIONAL PISTON ACTUATOR 121 5.1.1 MATHEMATICAL MODEL 122 5.1.2 CONTROLLER DESIGN 125 CONTENTS XV 5.2 APPLICATION: HYDRAULIC GAP CONTROL (HGC) IN ROLLING MILLS . 131 5.2.1 SYSTEM DESCRIPTION 131 5.2.2 MILL STAND MODEL 132 5.2.3 MATERIAL DEFORMATION MODEL 134 5.2.4 HGC WITH A DOUBLE-ACTING HYDRAULIC RAM 135 5.2.5 HGC WITH A SINGLE-ACTING HYDRAULIC RAM 138 5.3 REJECTION OF PERIODIC DISTURBANCES (ECCENTRICITY COMPENSA- TION) 142 5.4 PUMP-DISPLACEMENT-CONTROLLED ROTATIONAL PISTON ACTUATOR ... 148 5.4.1 MATHEMATICAL MODEL OF THE PUMP-MOTOR-UNIT 149 5.5 DISCRETE OPEN-LOOP OBSERVER FOR THE SWASH-PLATE ANGLE 156 5.5.1 MATHEMATICAL MODEL OF A SWASH-PLATE MECHANISM .... 157 5.5.2 MODEL SIMPLIFICATION BASED ON PHYSICAL CONSIDERATIONS 159 5.5.3 DISCRETE OPEN-LOOP OBSERVER AND MEASUREMENT RESULTS 162 REFERENCES 162 INDEX 171
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series2 Lecture notes in control and information sciences
spelling Kugi, Andreas 1967- Verfasser (DE-588)122240758 aut
Non-linear control based on physical models electrical, mechanical and hydraulic systems Andreas Kugi
London [u.a.] Springer 2001
XV, 172 S. graph. Darst.
txt rdacontent
n rdamedia
nc rdacarrier
Lecture notes in control and information sciences 260
Commande automatique ram
Commande, Théorie de la ram
Mécatronique ram
Automatic control
Control theory
Mechatronics
Nichtlineare Regelung (DE-588)4132964-8 gnd rswk-swf
Nichtlineare Regelung (DE-588)4132964-8 s
DE-604
Lecture notes in control and information sciences 260 (DE-604)BV005848579 260
GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009074614&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis
spellingShingle Kugi, Andreas 1967-
Non-linear control based on physical models electrical, mechanical and hydraulic systems
Lecture notes in control and information sciences
Commande automatique ram
Commande, Théorie de la ram
Mécatronique ram
Automatic control
Control theory
Mechatronics
Nichtlineare Regelung (DE-588)4132964-8 gnd
subject_GND (DE-588)4132964-8
title Non-linear control based on physical models electrical, mechanical and hydraulic systems
title_auth Non-linear control based on physical models electrical, mechanical and hydraulic systems
title_exact_search Non-linear control based on physical models electrical, mechanical and hydraulic systems
title_full Non-linear control based on physical models electrical, mechanical and hydraulic systems Andreas Kugi
title_fullStr Non-linear control based on physical models electrical, mechanical and hydraulic systems Andreas Kugi
title_full_unstemmed Non-linear control based on physical models electrical, mechanical and hydraulic systems Andreas Kugi
title_short Non-linear control based on physical models
title_sort non linear control based on physical models electrical mechanical and hydraulic systems
title_sub electrical, mechanical and hydraulic systems
topic Commande automatique ram
Commande, Théorie de la ram
Mécatronique ram
Automatic control
Control theory
Mechatronics
Nichtlineare Regelung (DE-588)4132964-8 gnd
topic_facet Commande automatique
Commande, Théorie de la
Mécatronique
Automatic control
Control theory
Mechatronics
Nichtlineare Regelung
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009074614&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
volume_link (DE-604)BV005848579
work_keys_str_mv AT kugiandreas nonlinearcontrolbasedonphysicalmodelselectricalmechanicalandhydraulicsystems