Electric machinery 6th edition by Fitzgerald,Charles Kingsley,Stephen Umans – Ebook PDF Instant Download/Delivery:0073660094,9780073660097
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ISBN 10:0073660094
ISBN 13:978-0073660097
Author: Fitzgerald,Charles Kingsley,Stephen Umans
The exciting new sixth edition of Electric Machinery has been extensively updated while retaining the emphasis on fundamental principles and physical understanding that has been the outstanding feature of this classic book.
This book covers fundamental concepts in detail as well as advanced topics for readers who wish to cover the material in more depth.
Several new chapters have been added, including a chapter on power electronics, as well as one on speed and torque control of dc and ac motors. This edition has also been expanded with additional examples and practice problems. The use of MATLAB has been introduced to the new edition, both in examples within the text as well as in the chapter problems.
Electric machinery 6th Table of contents:
1.1 Introduction to Magnetic Circuits
1.2 Flux Linkage, Inductance, and Energy
1.3 Properties of Magnetic Materials
1.4 AC Excitation
1.5 Permanent Magnets
1.6 Application of Permanent Magnet Materials
1.7 Summary
1.8 Problems
Chapter 2: Transformers
2.1 Introduction to Transformers
2.2 No-Load Conditions
2.3 Effect of Secondary Current; Ideal Transformer
2.4 Transformer Reactances and Equivalent Circuits
2.5 Engineering Aspects of Transformer Analysis
2.6 Autotransformers; Multiwinding Transformers
2.7 Transformers in Three-Phase Circuits
2.8 Voltage and Current Transformers
2.9 The Per-Unit System
2.10 Summary
2.11 Problems
Chapter 3: ElectromechanicalEnergy-Conversion Principles
3.1 Forces and Torques in Magnetic Field Systems
3.2 Energy Balance
3.3 Energy in Singly-Excited Magnetic Field Systems
3.4 Determination of Magnetic Force and Torque from Energy
3.5 Determination of Magnetic Force and Torque from Coenergy
3.6 Multiply-Excited Magnetic Field Systems
3.7 Forces and Torques in Systems with Permanent Magnets
3.8 Dynamic Equations
3.9 Analytical Techniques
3.10 Summary
3.11 Problems
Chapter 4: Introduction to Rotating Machines
4.1 Elementary Concepts
4.2 Introduction to AC and DC Machines
4.3 MMF of Distributed Windings
4.4 Magnetic Fields in Rotating Machinery
4.5 Rotating MMF Waves in AC Machines
4.6 Generated Voltage
4.7 Torque in Nonsalient-Pole Machines
4.8 Linear Machines
4.9 Magnetic Saturation
4.11 Summary
4.12 Problems
Chapter 5: Synchronous Machines
5.1 Introduction to Polyphase Synchronous Machines
5.2 Synchronous-Machine Inductances; Equivalent Circuits
5.3 Open- and Short-Circuit Characteristics
5.4 Steady-State Power-Angle Characteristics
5.5 Steady-State Operating Characteristics
5.6 Effects of Salient Poles; Introduction to Direct- and Quadrature-Axis Theory
5.7 Power-Angle Characteristics of Salient-Pole Machines
5.8 Permanent-Magnet AC Motors
5.9 Summary
5.10 Problems
Chapter 6: Polyphase Induction Machines
6.1 Introduction to Polyphase Induction Machines
6.2 Currents and Fluxes in Polyphase Induction Machines
6.3 Induction-Motor Equivalent Circuit
6.4 Analysis of the Equivalent Circuit
6.5 Torque and Power by Use of Thevenin’s Theorem
6.6 Parameter Determination from No-Load and Blocked-Rotor Tests
6.7 Effects of Rotor Resistance; Wound and Double-Squirrel-Cage Rotors
6.8 Summary
6.9 Problems
Chapter 7: DC Machines
7.1 Introduction
7.2 Commutator Action
7.3 Effect of Armature MMF
7.4 Analytical Fundamentals: Electric-Circuit Aspects
7.5 Analytical Fundamentals: Magnetic-Circuit Aspects
7.6 Analysis of Steady-State Performance
7.7 Permanent-Magnet DC Machines
7.8 Commutation and Interpoles
7.9 Compensating Windings
7.10 Series Universal Motors
7.11 Summary
7.12 Problems
Chapter 8: Variable-Reluctance Machines and Stepping Motors
8.1 Basics of VRM Analysis
8.2 Practical VRM Configurations
8.3 Current Waveforms for Torque Production
8.4 Nonlinear Analysis
8.5 Stepping Motors
8.6 Summary
8.7 Problems
Chapter 9 :Single- and Two-Phase Motors
9.1 Single-Phase Induction Motors: Qualitative Examination
9.2 Starting and Running Performance of SinglePhase Induction and Synchronous Motors
9.3 Revolving-Field Theory of Single-Phase Induction Motors
9.4 Two-Phase Induction Motors
9.6 Problems
Chapter 10: Introduction to Power Electronics
10.1 Power Switches
10.2 Rectification: Conversion of AC to DC
10.3 Inversion: Conversion of DC to AC
10.4 Summary
10.5 Bibliography
10.6 Problems
Chapter 11 :Speed and Torque Control
11.1 Control of DC Motors
11.2 Control of Synchronous Motors
11.3 Control of Induction Motors
11.4 Control of Variable-Reluctance Motors
11.5 Summary
11.6 Bibliography
11.7 Problems
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