Showing posts with label DRAFTSS. Show all posts
Showing posts with label DRAFTSS. Show all posts

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Electrical Power Systems By Mohamed E.EL-Hawary ebook

E-Book Details:

Title:
Introduction to Electrical Power Systems
Publisher:
Wiley-IEEE
Author:
Mohamed E. El-Hawary
Edition:
2nd, illustrated 2000
Format:
PDF
ISBN:
0470408634
EAN:
978-0-470-40863-6
No.ofPages:
394
Book Description:
Adapted from an updated version of the author's classic Electric Power System Design and Analysis, with new material designed for the undergraduate student and professionals new to Power Engineering. The growing importance of renewable energy sources, control methods and mechanisms, and system restoration has created a need for a concise, comprehensive text that covers the concepts associated with electric power and energy systems. Introduction to Electric Power Systems fills that need, providing an up-to-date introduction to this dynamic field. The author begins with a discussion of the modern electric power system, centering on the technical aspects of power generation, transmission, distribution, and utilization.
ABOUT THE AUTHOR:
Mohamed E. El-Hawary has been Professor and Associate Dean of Engineering at DalTech of Dalhousie University (formerly the Technical University of Nova Scotia) since 1981. He has written more than 150 technical papers, mainly in power system engineering, and is an author of three textbooks: Power Systems Analysis, Principles of Electric Machines, and Co
Table of Contents:
Preface.
Chapter 1: INTRODUCTION.
1.1 A Brief History of Electric Power Systems.
1.2 The Structure of the Power System.
1.3 Outline of the Text.
Chapter 2: BASICS OF ELECTRIC ENERGY SYSTEM THEORY.
2.1 Introduction.
2.2 Concepts of Power in Alternating Current Systems.
2.3 Three-Phase Systems.
2.4 The Per Unit System.
2.5 Electromagnetism and Electromechanical Energy Conversion.
2.6 Permeability and Magnetic Field Intensity.
2.7 Flux Linkages, Induced Voltages, Inductance, and Energy.
2.8 Hysteresis Loop.
2.9 Eddy Current and Core Losses.
2.10 Energy Flow Approach.
2.11 Multiply Excited Systems.
2.12 Doubly Excited Systems.
2.13 Salient-Pole Machines.
2.14 Round or Smooth Air-Gap Machines.
2.15 Machine-Type Classification.
2.16 P-Pole Machines.
2.17 Power System Representation.
Problems.
Chapter 3: POWER GENERATION AND THE SYNCHRONOUS MACHINE.
3.1 Introduction.
3.2 The Synchronous Machine: Preliminaries.
3.3 Synchronous Machine Fields.
3.4 A Simple Equivalent Circuit.
3.5 Principal Steady-State Characteristics.
3.6 Power-Angle Characteristics and the Infinite Bus Concept.
3.7 Accounting for Saliency.
3.8 Salient-Pole Machine Power Angle Characteristics.
Problems.
Chapter 4: THE TRANSFORMER.
4.1 Introduction.
4.2 General Theory of Transformer Operation.
4.3 Transformer Connections.
Problems.
Chapter 5: ELECTRIC POWER TRANSMISSION.
5.1 Introduction.
5.2 Electric Transmission Line Parameters.
5.3 Line Inductance.
5.4 Line Capacitance.
5.5 Two-Port Networks.
5.6 Transmission Line Models.
Problems.
Chapter 6: INDUCTION AND FRACTIONAL HORSEPOWER MOTORS.
6.1 Introduction.
6.2 Three-Phase Induction Motors.
6.3 Torque Relations.
6.4 Classification of Induction Motors.
6.5 Rotating Magnetic Fields in Single-Phase Induction Motors.
6.6 Equivalent Circuits for Single-Phase Induction Motors.
6.7 Power and Torque Relations.
6.8 Starting Single-Phase Induction Motors.
6.9 Single-Phase Induction Motor Types.
Problems.
Chapter 7: FAULTS AND PROTECTION OF ELECTRIC ENERGY SYSTEMS.
7.1 Introduction.
7.2 Transients during a Balanced Fault.
7.3 The Method of Symmetrical Components.
7.4 Sequence Networks.
7.5 Line-to-Ground Fault.
7.6 Double Line-to-Ground Fault.
7.7 Line-to-Line Fault.
7.8 The Balanced Three-Phase Fault.
7.9 System Protection, An Introduction.
7.10 Protective Relays.
7.11 Transformer Protection.
7.12 Transmission Line Protection.
7.13 Impedance-Based Protection Principles.
7.14 Computer Relaying.
Problems.
Chapter 8: THE ENERGY CONTROL CENTER.
8.1 Introduction
8.2 Overview of EMS Functions.
8.3 Power Flow Control
8.4 Power Flow
8.5 Stability Considerations
8.6 Power System State Estimation
8.7 Power System Security
8.8 Contingency Analysis
8.9 Optimal Preventive and Corrective Actions
8.10 Dynamic Security Analysis
Chapter 9: THE PRESENT AND FUTURE OF ELECTRIC ENERGY SYSTEMS.
9.1 Introduction.
9.2 Challenges Facing the System.
9.3 Blackouts and their Impact.
9.4 Mitigating and Coping.
REFERENCES.
INDEX.

electrical power systems technology by Dale Patrick and Stephen Fardo ebook free download

E-Book Details:

Title:
Electrical Power Systems Technology
Publisher:
Butterworth-Heinemann
Author:
Dale Patrick,Stephen Fardo
Edition:
2nd, illustrated 2000
Format:
PDF
ISBN:
0750697229
EAN:
978-0750697224
No.ofPages:
448

Book Description:
Electrical Machines and Power Systems is a technical school or A-Level text using a systematic method to provide an overview of electrical machine and power system operation in one easy-to-understand reference
      In Electrical Power Systems Technology, key concepts are presented using a 'big picture' approach. Real-world applications, procedures, and operations and stressed throughout the five major units of the book. A block diagram of the electrical power system model used for the unit organization of the book is a new approach to teaching this content. Mathematical presentations are simplified and problems are solved by basic applications.
FEATURES:
The textbook is divided into five major units of study--
(1)Power Measurement:(2)Power Production;(3) Power Distribution;(4) Power Conversion, (5) Power Control. The units contain educational objective which will be attained by the user of the text. Each unit is organized in chapter format, with each chapter containing an introductory section, the main text, and study problems/questions at the end. Line drawings and Industrial photographs are used to give the text a more 'real-world' look. This textbook will make learning about electrical machines and power systems relevant.
Complete overview of electrical power systems.
Over 350 illustrations.Approximately 100 classroom/laboratory activities.

HVDC & Facts Controllers By Vijay K.Sood ebook

E-Book Details:

Title:
HVDC and FACTS controllers: applications of static converters in power systems
Publisher:
Springer
Author:
Vijay K. Sood
Edition:
2nd, illustrated 2004
Format:
PDF
ISBN:
1402078900
EAN:
9781402078903
No.ofPages:
295

Table of Contents:
1: Introduction to HVDC Transmission. 1.1. Introduction. 1.2. Comparison of AC-DC Transmission. 1.3. Types of HVDC Systems. 1.4. References.
2: Types of Converters. 2.1. Introduction. 2.2. Current Source Converters (CSC). 2.3. Voltage Source Converters (VSC). 2.4. Closing Remarks. 2.5. References.
3: Synchronization Techniques for Power Converters. 3.1. Introduction. 3.2. Review of GFUs. 3.3. GFUs - Design And Analysis. 3.4. Tests On GFUs. 3.5. EMTP Simulation Of A Test System. 3.6. Conclusions. 3.7. Acknowledgement. 3.8. References.
4: HVDC Controls. 4.1. Historical Background. 4.2. Functions of HVDC Controls. 4.3. Control Basics for a Two-terminal DC Link. 4.4. Current Margin Control Method. 4.5. Current Control at the Rectifier. 4.6. Inverter Extinction Angle Control. 4.7. Hierarchy of Controls. 4.8. Action By Controls After a Disturbance. 4.9. References.
5: Forced Commutated HVDC Converters. 5.1. Introduction. 5.2. Commutation Techniques for HVDC Converters. 5.3. Examples of FC Converters for HVDC Transmission. 5.4. References.
6: Capacitor Commutated Converters for HVDC Systems. 6.1. Capacitor Commutated Converters (CCC). 6.2. Controlled Series Capacitor Converter (CSCC). 6.3. Comparison of CCC and CSCC. 6.4. Garabi Interconnection between Argentina-Brazil. 6.5. Closing Remarks. 6.6. Acknowledgement. 6.7. References.
7: Static Compensators: STATCOM Based on Chain-Link Converters. 7.1. Introduction. 7.2. The Chainlink Converter. 7.3. Advantages of the Chain Circuit STATCOM. 7.4. Design for Production. 7.5. Acknowledgement. 7.6. References.
8: HVDC Systems Using Voltage Source Converters. 8.1. Introduction. 8.2. Basic Elements of HVDC using VSCs. 8.3. Voltage Source Converter. 8.4. Applications. 8.5. Tjaereborg Windpower Project in Denmark. 8.6. Power Supply to Remote Locations (i.e. Islands). 8.7. Asynchronous Inter-Connections. 8.8. Concluding Remarks. 8.9. Acknowledgement. 8.10. References.
9: Active Filters. 9.1. Introduction. 9.2. DC Filters. 9.3. AC Filters. 9.4. Concluding Remarks. 9.5. Acknowledgement. 9.6. References.
10: Typical Disturbances in HVDC Systems. 10.1. Introduction. 10.2. CIGRE Benchmark Model for HVDC Control Studies. 10.3. Details of Control Systems Used. 10.4. Results. 10.5. Closing Remarks. 10.6. Acknowledgement. 10.7. References.
11: Advanced Controllers. 11.1. Introduction. 11.2. Application of an Advanced VDCL Unit. 11.3. Conclusions. 11.4. Acknowledgement. 11.5. References.
12: Measurement/Monitoring Aspects. 12.1. Introduction. 12.2. Monitoring of Signals. 12.3. Protection Against Over-currents. 12.4. Protection Against Over-voltages. 12.5. Acknowledgement. 12.6. References.
13: Case Studies of AC-DC System Interactions. 13.1. Introduction. 13.2. AC-DC system inter-actions. 13.3. Multi-terminal HVDC systems. 13.4. Harmonic inter-actions at Chandrapur HVDC station. 13.5. Conclusions. 13.6. Acknowledgement. 13.7. References.
14: Simulators for Analyzes of Power System Phenomena. 14.1. Introduction. 14.2. The IREQ Hybrid Simulator. 14.3. Off-line Digital Simulation Packages. 14.4. Real-time Digital Simulators. 14.5. Present and Future Trends. 14.6. Acknowledgement. 14.7. References.
15: Modern HVDC - State of the Art. 15.1. Introduction. 15.2. Past Decade Version. 15.3. Present Decade Version. 15.4. Concluding Remarks. 15.5. Acknowledgement. 15.6. References.
Index. About the Author. 


Book Description:
HVDC and FACTS Controllers: Applications of Static Converters in Power Systems focuses on the technical advances and developments that have taken place in the past ten years or so in the fields of High Voltage DC transmission and Flexible AC transmission systems. These advances (in HVDC transmission and FACTS) have added a new dimension to power transmission capabilities.

high voltage engineering by wadhwa ebook

E-Book Details:
Title:
High Voltage Engineering
Publisher:
New Age International
Author:
C.L. Wadhwa
Edition:
2nd, illustrated 2007
Format:
PDF
ISBN:
8122418597
EAN:
9788122418590
No.ofPages:
304
Book Description:
The book provides a clear, systematic and exhaustive exposition of various dimensions of High Voltage Engineering. Generation of a.c., d.c. and impulse voltage for testing of electrical equipments as per standard specifications have been explained. High voltage testing of some of the electrical equipments e.g. insulators, cables, transformers as per standard specifications has been explained. Various methods of non-destructive testing which yield information regarding life expectancy and long term stability or otherwise of the insulating materials have been discussed. The book takes a view of various types of transients in power system and suggests classical and more modern statistical methods of co-ordinating the insulation requirements of the system.

ABOUT THE AUTHOR:
C.L. Wadhwa, formerly Professor and Head of Electrical Engineering Department at the Delhi College of Engineering, Delhi, obtained his Ph.D. degree in Electrical Engineering from the Indian Institute of Technology, Delhi.
                                Professor Wadhwa has an experience of more than 30 years in teaching undergraduate as well as postgraduate classes in the areas of electrical machines, transmission networks, utilization of electric energy, switchgear and protection, high voltage engineering, electric field theory, advanced network analysis, computer optimisation, economics of power system, computer methods in power systems etc.

Table of Contents:
Electric Stress Estimation and Control
Breakdown Mechanism of Gases, Liquid and Solid Materials
Generation of High D.C. and A.C. Voltages
Generation of Impulse Voltages and Currents
Measurement of High Voltage and Currents
High Voltage Testing of Electrical Equipments
Non-destructive Insulation Test Techniques
Transients in Power Systems and Insulation Coordination.

flexible power transmission the hvdc options by J. Arrillaga ebook

E-Book Details:
Title:
Flexible power transmission: the HVDC options
Publisher:
John Wiley and Sons, 2007
Author:
J. Arrillaga, Y. H. Liu, N. R. Watson
Edition:
2nd, illustrated 2000
Format:
PDF
ISBN:
0470056886
EAN:
9780470056882
No.ofPages:
362
Book Description:
The development of power semiconductors with greater ratings and improved characteristics has meant that the power industry has become more willing to develop new converter configurations. These new configurations take advantage of the higher controllability and switching frequencies of the new devices. The next few years will decide which of the proposed technologies will dominate future power transmission systems.

Table of Contents:
UNIT – I BASIC CONCEPTS
Economics & Terminal equipment of HVDC transmission systems: Types of HVDC Links – Apparatus
required for HVDC Systems – Comparison of AC &DC Transmission, Application of DC Transmission
System – Planning & Modern trends in D.C. Transmission.
UNIT – IIANALYSIS OF HVDC CONVERTERS
Choice of Converter configuration – analysis of Graetz – characteristics of 6 Pulse & 12 Pulse converters –Cases of two 3 phase converters in star –star mode – their performance.
UNIT – III CONVERTER & HVDC SYSTEM CONTROL
Principal of DC Link Control – Converters Control Characteristics – Firing angle control – Current andextinction angle control – Effect of source inductance on the system; Starting and stopping of DC link;Power Control.
UNIT-IV REACTIVE POWER CONTROL IN HVDC
Reactive Power Requirements in steady state-Conventional control strategies-Alternate control strategiessources of reactive power-AC Filters – shunt capacitors-synchronous condensers.
UNIT –V POWER FLOW ANALYSIS IN AC/DC SYSTEMS
Modelling of DC Links-DC Network-DC Converter-Controller Equations-Solution of DC loadflow – P.U. System for d.c. quantities-solution of AC-DC Power flow-Simultaneous method-Sequential method.
UNIT-VI CONVERTER FAULT & PROTECTION
Converter faults – protection against over current and over voltage in converter station – surge arresters – smoothing reactors – DC breakers –Audible noise-space charge field-corona effects on DC lines-Radio interference.

UNIT – VII HARMONICS
Generation of Harmonics –Characteristics harmonics,calculation of AC Harmonics,Non- Characteristics harmonics, adverse effects of harmonics – Calculation of voltage & Current harmonics – Effect of Pulse number on harmonics
UNIT-VIII FILTERS
Types of AC filters,Design of Single tuned filters –Design of High pass filters.


ABOUT THE AUTHOR:
Jos Arrillaga is a very experienced author, now an Emeritus Professor from the Department of Electrical and Computer Engineering at the University of Canterbury, New Zealand. He has written 10 books, including 5 for Wiley on the topic of electrical power systems, such as Power System Harmonics,
Y. H. Liu, Professor, Inner Mongolia University
N. R. Watson, Associate Processor, Department of Electrical and Computer Engineering, University of Canterbury, Christchurch, New Zealand

power system analysis and design by j duncan glover and sarma ebook

E-Book Details:
Title:
Power system analysis and design
Publisher:
Cengage Learning, 2008
Author:
J. Duncan Glover, Mulukutla S. Sarma, Thomas Jeffrey Overbye, Thomas J. Overbye
Edition:
4, illustrated
Format:
PDF
ISBN:
0534548849
EAN:
9780534548841
No.ofPages:
770
Book Description:
The new edition of Power Systems Analysis and Design text provides students with an introduction to the basic concepts of power systems along with tools to aid them in applying these skills to real world situations. Physical concepts are highlighted while also giving necessary attention to mathematical techniques. Both theory and modeling are developed from simple beginnings so that they can be readily extended to new and complex situations. The authors incorporate new tools and material to aid students with design issues and reflect recent trends in the field.

Table of Contents:
UNIT – I Economic Operation of Power Systems-1
Optimal operation of Generators in Thermal Power Stations, - heat rate Curve – Cost Curve – Incremental fuel and Production costs, input-output characteristics, Optimum generation allocation with line losses neglected.
UNIT – IIEconomic Operation of Power Systems-2
Optimum generation allocation including the effect of transmission line losses – Loss Coefficients, General transmission line loss formula.
UNIT – III Hydrothermal Scheduling
Optimal scheduling of Hydrothermal System: Hydroelectric power plant models, Scheduling problems-Short term Hydrothermal scheduling problem.
UNIT –IV Modelling of Turbine, Generator and Automatic Controllers
Modelling of Turbine: First order Turbine model, Block Diagram representation of Steam Turbines and Approximate Linear Models. Modelling of Generator (Steady State and Transient Models): Description of Simplified Network Model of a Synchronous Machine (Classical Model), Description of Swing Equation (No Derivation) and State-SpaceII-Order Mathematical Model of Synchronous Machine. Modelling of Governor: Mathematical Modelling of Speed Governing System – Derivation of small signal transfer function. Modelling of Excitation System: Fundamental Characteristics of an Excitation system, Ttransfer function, Block Diagram Representation of IEEE Type-1 Model
UNIT – V Single Area Load Frequency Control
Necessity of keeping frequency constant.Definitions of Control area – Single area control – Block diagram representation of an isolated powersystem – Steady state analysis – Dynamic response – Uncontrolled case.
UNIT – VI Two-Area Load Frequency Control
Load frequency control of 2-area system – uncontrolled case and controlled case, tie-line bias control
UNIT-VII Load Frequency Controllers
Proportional plus Integral control of single area and its block diagram representation, steady stateresponse – Load Frequency Control and Economic dispatch control.
UNIT – VIII Reactive Power Control
Overview of Reactive Power control – Reactive Power compensation in transmission systems 
advantages and disadvantages of different types of compensating equipment for transmission systems;load compensation – Specifications of load compensator, Uncompensated and compensated transmission lines: shunt and Series Compensation.

ABOUT THE AUTHOR:
A PhD from MIT, J. Duncan Glover is President and Principal Engineer at Failure Electrical, LLC. Prior to forming Failure Electrical, LLC, Dr. Glover was a Principal Engineer at Exponent Failure Analysis Associates, a tenured Associate Professor in the Electrical and Computer Engineering Department of Northeastern University,
Mulukutla S. Sarma is the author of numerous technical articles published in leading journals, including the first studies of methods for computer-aided analysis of three-dimensional nonlinear electromagnetic field problems as applied to the design of electrical machinery. Sarma is a Life-Fellow of IEEE(USA), a Fellow of IEE(UK) and IEE(INDIA),

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