Produktbild: Electrical Machine C

Electrical Machine C

174,99 €

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

01.01.1900

Verlag

John Wiley & Sons

Seitenzahl

832

Maße (L/B/H)

24,4/17/4,4 cm

Gewicht

1506 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-68263-9

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

01.01.1900

Verlag

John Wiley & Sons

Seitenzahl

832

Maße (L/B/H)

24,4/17/4,4 cm

Gewicht

1506 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-68263-9

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: Electrical Machine C
  • Preface
     
    Acknowledgments
     
    Chapter 1 Fundamental of Electrical Machines 1
     
    1.1 Preliminary Remarks 1
     
    1.2 Basic Laws of Electrical Engineering 1
     
    1.3 Inductance 44
     
    1.4 Energy 53
     
    1.5 Overview of Electric Machines 55
     
    Chapter 2 Magnetic Circuits 77
     
    2.1 Preliminary Remarks 77
     
    2.2 Permeability 77
     
    2.3 Classification of Magnetic Materials 78
     
    2.4 Hysteresis Loop 82
     
    2.5 Eddy-Current and Core Losses 86
     
    2.6 Magnetic Circuits 90
     
    2.7 Field Energy 110
     
    2.8 The Magnetic Energy for a Solenoid Carrying a Current I 115
     
    2.9 Energy flow diagram 117
     
    2.10 Multiple excited systems [9] 121
     
    2.11 Concept of Rotating Magnetic Field 136
     
    Chapter 3 Single-phase and Three-phase Transformers 158
     
    3.1 Preliminary Remarks 158
     
    3.2 Classification of Transformers 160
     
    3.3 Principle of operation of transformer: 167
     
    3.4 Impedance Transformation 170
     
    3.5 DOT Convention 171
     
    3.6 Real/Practical Transformer 172
     
    3.7 Equivalent Circuit of a Single-phase Transformer 174
     
    3.8 Phasor Diagrams Under Load Condition 183
     
    3.9 Testing of Transformer 190
     
    3.10 Performance measures of a Transformer 196
     
    3.11 Auto-Transformer 210
     
    3.12 Three-phase Transformer 216
     
    3.13 Single-phase Equivalent Circuit of three-phase transformer 226
     
    3.14 Open-delta connection or V connection 230
     
    3.15 Harmonics in a single-phase Transformer 236
     
    3.16 Disadvantages of Harmonics in Transformer 250
     
    3.17 Open circuit and Short Circuit Conditions in Three-phase Transformer 254
     
    3.18 Matlab/Simulink Model of a 1-phase Transformer 256
     
    3.19 Matlab/Simulink Model of Testing of Transformer 259
     
    3.20 Matlab/Simulink Model of Auto-Transformer 260
     
    3.21 Matlab/Simulink Model of Three-phase Transformer 262
     
    3.22 Supplementary Solved Problems 267
     
    Chapter 4 Fundamental of Rotating Electrical Machines and Machine Windings 300
     
    4.1 Preliminary Remarks 300
     
    4.2 Machine Windings 304
     
    4.3 Electromotive Force (EMF) Equation 363
     
    4.4 Magnetomotive Force (mmf) of AC Windings 367
     
    4.5 Harmonic Effect [6] 374
     
    4.6 Basic Principles of Electric Machines 382
     
    Chapter 5 DC Machines 394
     
    5.1 Preliminary Remarks 394
     
    5.2 Construction and types of DC generator 395
     
    5.3 Principle of operation of DC generator 398
     
    5.4 Commutation problem and solution 403
     
    5.5 Types of windings 405
     
    5.6 EMF equations in a DC generator 407
     
    5.7 Brush placement in a DC machine 408
     
    5.8 Equivalent circuit of DC generator 408
     
    5.9 Losses of DC Generator 409
     
    5.10 Armature reaction 415
     
    5.11 Principle of operation of a DC motor 418
     
    5.12 Emf and torque equations of DC motor 420
     
    5.13 Types of DC motor 420
     
    5.14 Characteristics of DC motors 425
     
    5.15 Starting of DC motor 429
     
    5.16 Speed control of DC motor 433
     
    5.17 Solved examples 437
     
    5.18 Matlab/Simulink model of DC machine 446
     
    Chapter 6 Three-phase Induction Machine 460
     
    6.1 Preliminary Remarks 460
     
    6.2 Construction of a three-phase induction machine 460
     
    6.3 Principle operation of three-phase induction motor 463
     
    6.4 Per-phase Equivalent circuit of a three-phase induction machine 467
     
    6.5 Power Flow diagram in a three-phase induction motor 475
     
    6.6 Power relations in a three-phase induction motor 477