Introduction to Electrical Power Systems 1st edition by Mohamed El Hawary – Ebook PDF Instant Download/Delivery. 0470408634 978-0470408636
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ISBN 10: 0470408634
ISBN 13: 978-0470408636
Author: Mohamed El Hawary
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. After providing an overview of electric power and machine theory fundamentals, he offers a practical treatment-focused on applications-of the major topics required for a solid background in the field, including synchronous machines, transformers, and electric motors. He also furnishes a unique look at activities related to power systems, such as power flow and control, stability, state estimation, and security assessment. A discussion of present and future directions of the electrical energy field rounds out the text. With its broad, up-to-date coverage, emphasis on applications, and integrated MATLAB scripts, Introduction to Electric Power Systems provides an ideal, practical introduction to the field-perfect for self-study or short-course work for professionals in related disciplines.
Introduction to Electrical Power Systems 1st Table of contents:
Preface
- Introduction to Electrical Power Systems
- Scope and Objectives of the Book
- Who Should Read This Book
- How to Use the Book
Chapter 1: Introduction to Power Systems
1.1. Overview of Electrical Power Systems
1.2. Historical Development of Power Systems
1.3. Components of Power Systems
1.4. Power Generation, Transmission, and Distribution
1.5. Role of Power Systems in Society
1.6. Challenges and Future of Power Systems
Chapter 2: Power Generation
2.1. Basics of Power Generation
2.2. Types of Power Plants: Thermal, Hydroelectric, Nuclear, and Renewable
2.3. Steam Power Plants
2.4. Gas and Combined Cycle Power Plants
2.5. Renewable Energy: Wind, Solar, and Biomass
2.6. Nuclear Power Generation
2.7. Power Generation and Environmental Impact
Chapter 3: Transmission and Distribution Systems
3.1. Transmission Lines and Substations
3.2. High Voltage and Low Voltage Transmission
3.3. Transformers and Voltage Regulation
3.4. Power Flow and Losses in Transmission Systems
3.5. Distribution Networks and Circuit Design
3.6. Load Flow Analysis and Voltage Control
3.7. Protection and Control in Transmission Systems
Chapter 4: Power System Components
4.1. Generators and Synchronous Machines
4.2. Transformers and Their Functions
4.3. Transmission and Distribution Lines
4.4. Circuit Breakers and Protection Relays
4.5. Busbars and Switchgear
4.6. Capacitors and Reactors
4.7. Power System Control and Automation
Chapter 5: Power System Operation
5.1. Power System Operating Principles
5.2. Frequency and Voltage Regulation
5.3. Load Shedding and System Stability
5.4. Economic Dispatch of Power Generation
5.5. Power System Control Centers
5.6. SCADA Systems for Power System Management
5.7. Real-Time System Monitoring and Control
Chapter 6: Power System Analysis
6.1. Power System Modeling and Representation
6.2. Per Unit System and Base Quantities
6.3. Power Flow Analysis (Load Flow)
6.4. Short Circuit Analysis
6.5. Stability Analysis in Power Systems
6.6. Transients and Dynamic Stability
6.7. Power System Protection and Fault Detection
Chapter 7: Power System Protection
7.1. Protection Basics and Relay Operation
7.2. Overcurrent and Differential Protection
7.3. Distance and Directional Protection
7.4. Transformer Protection and Motor Protection
7.5. Protection Coordination
7.6. Protection Schemes for Transmission Lines
7.7. Reliability and Fault Diagnosis in Power Systems
Chapter 8: Economic and Environmental Aspects of Power Systems
8.1. Economic Operation of Power Systems
8.2. Power Market Structures and Deregulation
8.3. Demand Forecasting and Load Management
8.4. Environmental Impact of Power Generation
8.5. Emission Control and Sustainability in Power Systems
8.6. Renewable Energy Integration into the Grid
8.7. Smart Grids and Future Trends in Power Systems
Chapter 9: Renewable Energy and Smart Grids
9.1. Introduction to Renewable Energy Technologies
9.2. Wind Energy and Solar Power Integration
9.3. Grid Connection of Distributed Generation
9.4. Energy Storage Systems in Power Systems
9.5. Smart Grids and Their Role in Modern Power Systems
9.6. Smart Metering and Demand Response
9.7. Cybersecurity in Smart Grid Systems
Chapter 10: Power System Reliability and Quality
10.1. Reliability in Power Systems
10.2. Power Quality Issues: Voltage Sags, Harmonics, and Flicker
10.3. Fault Detection and Restoration
10.4. Reliability Indices and Assessment Techniques
10.5. Impact of Renewable Energy on Reliability
10.6. Voltage Stability and System Resilience
10.7. Power System Reliability in the Face of Extreme Weather
Chapter 11: Future Trends in Power Systems
11.1. Evolution of Power Systems
11.2. Distributed Energy Resources (DERs)
11.3. Decentralized Power Systems and Microgrids
11.4. Electrification of Transport and Its Impact on Power Systems
11.5. The Role of Artificial Intelligence and Machine Learning
11.6. The Future of Grid Modernization and Smart Cities
11.7. Power Systems and Global Energy Transition
Appendices
A.1. Glossary of Terms
A.2. Standard Power System Symbols and Diagrams
A.3. Key Formulas for Power Systems Analysis
A.4. Further Reading and References
A.5. Index
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