
ELECTRICAL POWER SYSTEM ESSENTIALS By Pieter Schavemaker & Van Lou Der Sluis
US $34.98US $34.98
Mon, May 12, 09:12 AMMon, May 12, 09:12 AM
ELECTRICAL POWER SYSTEM ESSENTIALS By Pieter Schavemaker & Van Lou Der Sluis
US $34.98
Condition:
Good
A book that has been read but is in good condition. Very minimal damage to the cover including scuff marks, but no holes or tears. The dust jacket for hard covers may not be included. Binding has minimal wear. The majority of pages are undamaged with minimal creasing or tearing, minimal pencil underlining of text, no highlighting of text, no writing in margins. No missing pages. See the seller’s listing for full details and description of any imperfections.
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Item specifics
- Condition
- ISBN
- 9780470510278
- Subject Area
- Technology & Engineering
- Publication Name
- Electrical Power System Essentials
- Publisher
- Wiley & Sons, Incorporated, John
- Item Length
- 9.9 in
- Subject
- Power Resources / Electrical, Power Resources / General
- Publication Year
- 2008
- Type
- Textbook
- Format
- Hardcover
- Language
- English
- Item Height
- 0.9 in
- Item Weight
- 25 Oz
- Item Width
- 6.9 in
- Number of Pages
- 340 Pages
About this product
Product Identifiers
Publisher
Wiley & Sons, Incorporated, John
ISBN-10
0470510277
ISBN-13
9780470510278
eBay Product ID (ePID)
63866766
Product Key Features
Number of Pages
340 Pages
Language
English
Publication Name
Electrical Power System Essentials
Subject
Power Resources / Electrical, Power Resources / General
Publication Year
2008
Type
Textbook
Subject Area
Technology & Engineering
Format
Hardcover
Dimensions
Item Height
0.9 in
Item Weight
25 Oz
Item Length
9.9 in
Item Width
6.9 in
Additional Product Features
Intended Audience
Scholarly & Professional
LCCN
2008-007359
Dewey Edition
22
Illustrated
Yes
Dewey Decimal
621.319/13
Table Of Content
Preface.1. Introduction to Power System Analysis.1.1 Introduction.1.2 Scope of the Material.1.3 General Characteristics of Power Systems.1.4 Phasors.1.5 Equivalent Line-To-Neutral Diagrams.1.6 Power in Single-phase Circuits.1.7 Power in Three-phase Circuits.1.8 Per Unit Normalization.1.9 Power System Structure.2. The Generation of Electric Energy.2.1 Introduction.2.2 Thermal Power Plants.2.3 Nuclear Power Plants.2.4 Renewable Energy.2.5 The Synchronous Machine.3. The Transmission of Electric Energy.3.1 Introduction.3.2 Transmission and Distribution Network.3.3 Network Structures.3.4 Substations.3.5 Substation Concepts.3.6 Protection of Transmission And Distribution Networks.3.7 Transformers.3.8 Power Carriers.4. The Utilization of Electric Energy.4.1 Introduction.4.2 Types of Load.4.3 Classification of Grid Users.5. Power System Control.5.1 Introduction.5.2 Basics of Power System Control.5.3 Active Power and Frequency Control.5.4 Voltage Control and Reactive Power.5.5 Control of Transported Power.5.6 Flexible AC Transmission Systems (FACTS).6. Energy Management Systems.6.1 Introduction.6.2 Loadflow or Power Flow Computation.6.3 Optimal Powerflow.6.4 State Estimator.7. Electricity Markets.7.1 Introduction.7.2 Electricity Market Structure.7.3 Market Clearing.7.4 Social Welfare.7.5 Market Coupling.8. Future Power Systems.8.1 Introduction.8.2 Renewable Energy.8.3 Decentralized Or Distributed Generation.8.4 Power-electronic Interfaces.8.5 Energy Storage.8.6 Blackouts and Chaotic Phenomena.Appendices.A. Maxwell's Laws.A.1 Introduction.A.2 Power Series Approach To Time-varying Fields.A.3 Quasi-Static Field Of A Parallel-plate Capacitor.A.4 Quasi-Static Field Of A Single-turn Inductor.A.5 Quasi-Static Field Of A Resistor.A.6 Circuit Modeling.B. Power Transformer Model.B.1 Introduction.B.2 The Ideal Transformer.B.3 Magnetically-Coupled Coils.B.4 The Non-ideal Transformer.B.5 Three-phase Transformer.C. Synchronous Machine Model.C.1 Introduction.C.2 The Primitive Synchronous Machine.C.3 The Single-phase Synchronous Machine.C.4 The Three-phase Synchronous Machine.C.5 Synchronous Generator In The Power System.D Induction Machine Model.D.1 Introduction.D.2 The Basic Principle of The Induction Machine.D.3 The Magnetic Field In The Air-Gap.D.4 A Simple Circuit Model For The Induction Machine.D.5 Induction Motor In The Power System.E. The Representation of Lines And Cables.E.1 Introduction.E.2 The Long Transmission Line.E.3 The Medium-length Transmission Line.E.4 The Short Transmission Line.E.5 Comparison of The Three Line Models.E.6 The Underground Cable.References.List of Abbreviations.List of Symbols.Index.
Synopsis
Much of the basic hardware that generates, transmits and distributes electricity has changed little over the past century. However, the techniques applied in the power system have advanced, leading to greater transformer efficiency and more economic transmission and distribution. As the demand for electricity in both the developed and developing world increases, governments and electricity providers continue to look for alternative means of creating energy through renewable sources. Today's needs also include well-designed systems that are capable of producing large quantities of electricity in the safest, most cost-effective way for the benefit of both individuals and industry. This book provides an accessible introduction to the interesting world of alternating current (AC) power systems, focusing on the system as a whole. After laying out the basics for a steady-state analysis of three-phase power systems, the book examines: the generation, transmission, distribution, and utilization of electric energy; the principles of thermal, nuclear and renewable energy plants; power system control and operation; the organization of electricity markets, the changes currently taking place, and the developments that could lead to alternative power systems in the future. Inside, you will find appendices that support the key text, supplying information on the modeling of power system components and including basic equations derived from Maxwell's laws. Numerous practical examples, case studies and illustrations, demonstrate the theory, techniques and results presented in the text, and an accompanying solutions manual with problems and worked through answers is available on a supplementarywebsite. With its pragmatic approach, "Power System Essentials" is ideal for senior undergraduate students in electrical engineering who require an up-to-date overview of the subject. This book also acts as a concise reference, suitable for postgraduates and professionals from a range of disciplines who would like to work in this field., Electrical Power System Essentials Electrical power systems can be regarded as one of the most complex systems designed, constructed and operated by man. Of course it is a fact that the majority of the hardware that makes the generation, transmission and distribution of electricity possible, has not changed in essence since their first appearance more than a hundred years ago. In the design and construction of transformers, motors, generators, cables, and transmission lines, it is better to speak of evolution rather than revolution. As a result of this evolution, many advanced technologies and techniques are applied in todays power system. This book provides an accessible introduction to the interesting world of alternating current (AC) power systems, focusing on the system as a whole. After laying out the basics for a steady-state analysis of three-phase power systems, the book examines: the generation, transmission, distribution, and utilization of electric energy; power system control and operation; the organization of electricity markets, the changes currently taking place, and the developments that could lead to alternative power systems in the future. Inside, you will find appendices that support the key text, supplying information on the modeling of power system components and including basic equations derived from Maxwells laws. Numerous practical examples, case studies and illustrations, demonstrate the theory, techniques and results presented in the text, and accompanying Powerpoint slides are available on a supplementary website. With its pragmatic approach, Electrical Power System Essential is ideal for senior undergraduate students in electrical engineering who require an up-to-date overview of the subject. This book also acts as a concise reference, suitable for postgraduates and professionals from a range of disciplines who would like to work in this field., This book provides an accessible, broad and up-to-date overview of alternating current (AC) power systems, focusing on the system as a whole rather than analyzing in detail the modelling of component parts (as is the case in classical power engineering textbooks). Examples and case studies back up the theory or techniques presented throughout., Much of the basic hardware that generates, transmits and distributes electricity has changed little over the past century. However, the techniques applied in the power system have advanced, leading to greater transformer efficiency and more economic transmission and distribution. As the demand for electricity in both the developed and developing world increases, governments and electricity providers continue to look for alternative means of creating energy through renewable sources. Today's needs also include well-designed systems that are capable of producing large quantities of electricity in the safest, most cost-effective way for the benefit of both individuals and industry. This book provides an accessible introduction to the interesting world of alternating current (AC) power systems, focusing on the system as a whole. After laying out the basics for a steady-state analysis of three-phase power systems, the book examines: the generation, transmission, distribution, and utilization of electric energy; the principles of thermal, nuclear and renewable energy plants; power system control and operation; the organization of electricity markets, the changes currently taking place, and the developments that could lead to alternative power systems in the future. Inside, you will find appendices that support the key text, supplying information on the modeling of power system components and including basic equations derived from Maxwell's laws. Numerous practical examples, case studies and illustrations, demonstrate the theory, techniques and results presented in the text, and accompanying Powerpoint slides are available on a supplementary website. With its pragmatic approach, Power System Essentials is ideal for senior undergraduate students in electrical engineering who require an up-to-date overview of the subject. This book also acts as a concise reference, suitable for postgraduates and professionals from a range of disciplines who would like to work in this field.
LC Classification Number
TK3226
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