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Auteur Syed A. Nasar
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Affiner la recherche Interroger des sources externes2008+ Solved Problems in Electromagnetics / Syed A. Nasar
Titre : 2008+ Solved Problems in Electromagnetics Type de document : texte imprimé Auteurs : Syed A. Nasar, Auteur Editeur : New Delhi : PHI Learnig Private Limited Année de publication : 2009 Importance : 438 p. Présentation : couv. ill. en coul., ill. Format : 27,7 cm. ISBN/ISSN/EAN : 978-81-203-3485-4 Langues : Anglais (eng) Catégories : ELECTROTECHNIQUE Index. décimale : 10-06 Electromagnétisme Note de contenu : Contents:
Chapter1:vector analysis
Chapter2:electrostatics
Chapter3:magnetostatics
Chapter4:maxwell's equations
Chapter5:plane waves
Chapter6:transmission lines
Chapter7:waveguides
Chapter8:cavity resonators
Chapter9:antennas
Chapter10:review problems
2008+ Solved Problems in Electromagnetics [texte imprimé] / Syed A. Nasar, Auteur . - New Delhi : PHI Learnig Private Limited, 2009 . - 438 p. : couv. ill. en coul., ill. ; 27,7 cm.
ISBN : 978-81-203-3485-4
Langues : Anglais (eng)
Catégories : ELECTROTECHNIQUE Index. décimale : 10-06 Electromagnétisme Note de contenu : Contents:
Chapter1:vector analysis
Chapter2:electrostatics
Chapter3:magnetostatics
Chapter4:maxwell's equations
Chapter5:plane waves
Chapter6:transmission lines
Chapter7:waveguides
Chapter8:cavity resonators
Chapter9:antennas
Chapter10:review problems
Exemplaires
Code-barres Cote Support Localisation Section Disponibilité N.Inventaire 1798 10-06-40 Livre Bibliothèque de Génie Electrique- USTO Documentaires Exclu du prêt 1798 Schaum's Outline of Théory and Problems of Electric Power Systems / Syed A. Nasar
Titre : Schaum's Outline of Théory and Problems of Electric Power Systems Type de document : texte imprimé Auteurs : Syed A. Nasar, Auteur Editeur : USA : McGraw-Hill Année de publication : 1990 Collection : Schaum's Outline Series Importance : 175 p. Présentation : couv. ill. en coul., ill. Format : 27,6 cm. ISBN/ISSN/EAN : 978-0-07-045917-5 Langues : Anglais (eng) Catégories : ELECTROTECHNIQUE Index. décimale : 10-04 Réseaux et protection Résumé : If you want top grades and excellent understanding of electric power systems, this powerful study tool is the best tutor you can have! It takes you step-by-step through the subject and gives you accompanying related problems with fully worked solutions. You also get hundreds of additional problems to solve on your own, working at your own speed. This superb Outline clearly presents every aspect of real-world power system calculation and implementation. Famous for their clarity, wealth of illustrations and examples, and lack of dreary minutia, SchaumÕs Outlines have sold more than 30 million copies worldwide. Compatible with any textbook, this Outline is also perfect for standardized test or professional exam review. Note de contenu : Contents:
Chapter 1 Fundamentals of Electric Power Systems
1.1 Energy and Power
1.2 Growth Rates
1.3 Major Energy Sources
Chapter 2 Power System Representation
2.1 One-Line Diagrams
2.2 Impedance and Reactance Diagrams
2.3 Per-Unit Representation
2.4 Change of Base
2.5 Summary of Three-Phase Circuit Relationships
Chapter 3 Transmission-Line Parameters
3.1 Resistance
3.2 Inductance
3.3 Capacitance
Chapter 4 Transmission-Line Calculations
4.1 Transmission-Line Representation
4.2 Short Transmission Line
4.3 Medium-Length Transmission Line
4.4 Long Transmission Line
4.5 The Transmission Line as a Two-Port Network
4.6 Power Flow on Transmission Lines
4.7 Traveling Waves on Transmission Lines
Chapter 5 Underground Cables
5.1 Electric Stress in a Single-Core Cable
5.2 Grading of Cables
5.3 Cable Capacitance
5.4 Cable Inductance
5.5 Dielectric Loss and Heating
Chapter 6 Fault Calculations
6.1 Types of Faults
6.2 Symmetrical Faults
6.3 Unsymmetrical Faults and Symmetrical Components
6.4 Sequence Power
6.5 Sequence Impedances and Sequence Networks
Chapter 7 General Methods for Network Calculations
7.1 Source Transformations
7.2 Bus Admittance Matrix
7.3 Elements of Y[sub(bus)]
7.4 Bus Impedance Matrix
7.5 Elements of Z[sub(bus)]
7.6 Modifying Z[sub(bus)]
Chapter 8 Power-Flow Studies
8.1 Power Flow in a Short Transmission Line
8.2 An Iterative Procedure
8.3 The Power-Flow Equations
8.4 Gauss and Gauss-Seidel Methods
8.5 The Newton-Raphson Method
8.6 Bus Voltage Specification and Regulation
Chapter 9 Power System Operation and Control
9.1 Economic Distribution of Load between Generators
9.2 Effect of Transmission-Line Loss
9.3 Load Distribution between Plants
9.4 Power System Control
Chapter 10 Power System Stability
10.1 Inertia Constant and Swing Equation
10.2 H Constant on a Common MVA Base
10.3 Equal-Area Criterion
10.4 Critical Clearing Angle
10.5 A Two-Machine System
10.6 Step-by-Step Solution
Chapter 11 Power System Protection
11.1 Components of a Protection System
11.2 Transducers and Relays
11.3 Relay Types
11.4 Protection of Lines, Transformers, and Generators
IndexSchaum's Outline of Théory and Problems of Electric Power Systems [texte imprimé] / Syed A. Nasar, Auteur . - USA : McGraw-Hill, 1990 . - 175 p. : couv. ill. en coul., ill. ; 27,6 cm.. - (Schaum's Outline Series) .
ISBN : 978-0-07-045917-5
Langues : Anglais (eng)
Catégories : ELECTROTECHNIQUE Index. décimale : 10-04 Réseaux et protection Résumé : If you want top grades and excellent understanding of electric power systems, this powerful study tool is the best tutor you can have! It takes you step-by-step through the subject and gives you accompanying related problems with fully worked solutions. You also get hundreds of additional problems to solve on your own, working at your own speed. This superb Outline clearly presents every aspect of real-world power system calculation and implementation. Famous for their clarity, wealth of illustrations and examples, and lack of dreary minutia, SchaumÕs Outlines have sold more than 30 million copies worldwide. Compatible with any textbook, this Outline is also perfect for standardized test or professional exam review. Note de contenu : Contents:
Chapter 1 Fundamentals of Electric Power Systems
1.1 Energy and Power
1.2 Growth Rates
1.3 Major Energy Sources
Chapter 2 Power System Representation
2.1 One-Line Diagrams
2.2 Impedance and Reactance Diagrams
2.3 Per-Unit Representation
2.4 Change of Base
2.5 Summary of Three-Phase Circuit Relationships
Chapter 3 Transmission-Line Parameters
3.1 Resistance
3.2 Inductance
3.3 Capacitance
Chapter 4 Transmission-Line Calculations
4.1 Transmission-Line Representation
4.2 Short Transmission Line
4.3 Medium-Length Transmission Line
4.4 Long Transmission Line
4.5 The Transmission Line as a Two-Port Network
4.6 Power Flow on Transmission Lines
4.7 Traveling Waves on Transmission Lines
Chapter 5 Underground Cables
5.1 Electric Stress in a Single-Core Cable
5.2 Grading of Cables
5.3 Cable Capacitance
5.4 Cable Inductance
5.5 Dielectric Loss and Heating
Chapter 6 Fault Calculations
6.1 Types of Faults
6.2 Symmetrical Faults
6.3 Unsymmetrical Faults and Symmetrical Components
6.4 Sequence Power
6.5 Sequence Impedances and Sequence Networks
Chapter 7 General Methods for Network Calculations
7.1 Source Transformations
7.2 Bus Admittance Matrix
7.3 Elements of Y[sub(bus)]
7.4 Bus Impedance Matrix
7.5 Elements of Z[sub(bus)]
7.6 Modifying Z[sub(bus)]
Chapter 8 Power-Flow Studies
8.1 Power Flow in a Short Transmission Line
8.2 An Iterative Procedure
8.3 The Power-Flow Equations
8.4 Gauss and Gauss-Seidel Methods
8.5 The Newton-Raphson Method
8.6 Bus Voltage Specification and Regulation
Chapter 9 Power System Operation and Control
9.1 Economic Distribution of Load between Generators
9.2 Effect of Transmission-Line Loss
9.3 Load Distribution between Plants
9.4 Power System Control
Chapter 10 Power System Stability
10.1 Inertia Constant and Swing Equation
10.2 H Constant on a Common MVA Base
10.3 Equal-Area Criterion
10.4 Critical Clearing Angle
10.5 A Two-Machine System
10.6 Step-by-Step Solution
Chapter 11 Power System Protection
11.1 Components of a Protection System
11.2 Transducers and Relays
11.3 Relay Types
11.4 Protection of Lines, Transformers, and Generators
IndexExemplaires
Code-barres Cote Support Localisation Section Disponibilité N.Inventaire 31 10-04-06 Livre Bibliothèque de Génie Electrique- USTO Documentaires Exclu du prêt 31 The induction machines design handbook / Ion Boldea
Titre : The induction machines design handbook Type de document : texte imprimé Auteurs : Ion Boldea, Auteur ; Syed A. Nasar, Auteur Mention d'édition : 2nd. ed. Editeur : Boca Raton : CRC Press/Taylor Année de publication : 2010 Importance : 827 p. Présentation : couv. ill. en coul., ill. Format : 25.4 cm ISBN/ISSN/EAN : 978-1-420-06668-5 Langues : Anglais (eng) Catégories : ELECTROTECHNIQUE Index. décimale : 10-03 Machines éléctriques Résumé : Developments in power electronics and digital control have made the rugged, low-cost, high-performance induction machine the popular choice of electric generator/motor in many industries. As the induction machine proves to be an efficient power solution for the flexible, distributed systems of the near future, the dynamic worldwide market continues to grow. It is imperative that engineers have a solid grasp of the complex issues of analysis and design associated with these devices.
The Induction Machines Design Handbook, Second Edition satisfies this need, providing a comprehensive, self-contained, and up-to-date reference on single- and three-phase induction machines in constant and variable speed applications. Picking up where the first edition left off, this book taps into the authors’ considerable field experience to fortify and summarize the rich existing literature on the subject. Without drastically changing the effective logical structure and content of the original text, this second edition acknowledges notable theoretical and practical developments in the field that have occurred during the eight years since the first publication. It makes corrections and/or improvements to text, formulae, and figures.Note de contenu : Contents:
1 Induction Machines: An Introduction
2 Construction Aspects and Operation Principles
3 Magnetic, Electric, and Insulation Materials for IM
4 Induction Machine Windings and Their MMFs
5 The Magnetization Curve and Inductance
6 Leakage Inductances and Resistances
7 Steady-State Equivalent Circuit and Performance
8 Starting and Speed Control Methods
9 Skin and On-Load Saturation Effects
10 Airgap Field Space Harmonics, Parasitic Torques, Radial Forces, and Noise
11 Losses in Induction Machines
12 Thermal Modeling and Cooling
13 Induction Machine Transients
14 Motor Specifications and Design Principles
15 IM Design Below 100KW and Constant V and f (Size Your Own IM)
16 Induction motor design above 100KW and constant V and f
17 Induction Machine Design for Variable Speed
18 Optimization Design
19 Three Phase Induction Generators
20 Linear Induction motors
21 Super-High Frequency Models and Behavior of IMs
22 Testing of Three-Phase IMs
23 Single-Phase Induction Machines: The Basics
24 Single-Phase Induction Motors: Steady State
25 Single-Phase IM Transients
26 Single-Phase Induction Generators
27 Single-Phase IM Design
28 Single-Phase IM Testing
The induction machines design handbook [texte imprimé] / Ion Boldea, Auteur ; Syed A. Nasar, Auteur . - 2nd. ed. . - Boca Raton : CRC Press/Taylor, 2010 . - 827 p. : couv. ill. en coul., ill. ; 25.4 cm.
ISBN : 978-1-420-06668-5
Langues : Anglais (eng)
Catégories : ELECTROTECHNIQUE Index. décimale : 10-03 Machines éléctriques Résumé : Developments in power electronics and digital control have made the rugged, low-cost, high-performance induction machine the popular choice of electric generator/motor in many industries. As the induction machine proves to be an efficient power solution for the flexible, distributed systems of the near future, the dynamic worldwide market continues to grow. It is imperative that engineers have a solid grasp of the complex issues of analysis and design associated with these devices.
The Induction Machines Design Handbook, Second Edition satisfies this need, providing a comprehensive, self-contained, and up-to-date reference on single- and three-phase induction machines in constant and variable speed applications. Picking up where the first edition left off, this book taps into the authors’ considerable field experience to fortify and summarize the rich existing literature on the subject. Without drastically changing the effective logical structure and content of the original text, this second edition acknowledges notable theoretical and practical developments in the field that have occurred during the eight years since the first publication. It makes corrections and/or improvements to text, formulae, and figures.Note de contenu : Contents:
1 Induction Machines: An Introduction
2 Construction Aspects and Operation Principles
3 Magnetic, Electric, and Insulation Materials for IM
4 Induction Machine Windings and Their MMFs
5 The Magnetization Curve and Inductance
6 Leakage Inductances and Resistances
7 Steady-State Equivalent Circuit and Performance
8 Starting and Speed Control Methods
9 Skin and On-Load Saturation Effects
10 Airgap Field Space Harmonics, Parasitic Torques, Radial Forces, and Noise
11 Losses in Induction Machines
12 Thermal Modeling and Cooling
13 Induction Machine Transients
14 Motor Specifications and Design Principles
15 IM Design Below 100KW and Constant V and f (Size Your Own IM)
16 Induction motor design above 100KW and constant V and f
17 Induction Machine Design for Variable Speed
18 Optimization Design
19 Three Phase Induction Generators
20 Linear Induction motors
21 Super-High Frequency Models and Behavior of IMs
22 Testing of Three-Phase IMs
23 Single-Phase Induction Machines: The Basics
24 Single-Phase Induction Motors: Steady State
25 Single-Phase IM Transients
26 Single-Phase Induction Generators
27 Single-Phase IM Design
28 Single-Phase IM Testing
Exemplaires
Code-barres Cote Support Localisation Section Disponibilité N.Inventaire 3314 10-03-114 Livre Bibliothèque de Génie Electrique- USTO Documentaires Exclu du prêt 3314 3315 10-03-114 Livre Bibliothèque de Génie Electrique- USTO Documentaires Exclu du prêt 3315



