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Introductory technical guidance for electrical engineers and other professional engineers and construction managers interested in auxiliary electric power systems. Here is what is discussed: 1. INTRODUCTION, 2. EMERGENCY POWER SYSTEMS, 3. PRIME MOVERS, 4. GENERATORS AND EXCITERS , 5. SWITCHGEAR, 6. OPERATION AND MAINTENANCE, 7. LUBRICATING OIL PURIFICATION.
Introductory technical guidance for electrical engineers and construction managers interested in auxiliary electric power generating equipment and systems. Here is what is discussed: 1. INTRODUCTION 2. EMERGENCY POWER SYSTEMS 3. PRIME MOVERS 4. GENERATORS AND EXCITERS 5. SWITCHGEAR 6. OPERATION AND MAINTENANCE 7. LUBRICATING OIL PURIFICATION
This publication provides introductory technical guidance for electrical engineers and other professional engineers, construction managers and plant managers interested in auxiliary electric power systems to provide electric power to a facility in the event of an electric utility outage or other power disruption. Here is what is discussed: 1. INTRODUCTION 2. EMERGENCY POWER SYSTEMS 3. PRIME MOVERS 4. GENERATORS AND EXCITERS 5. SWITCHGEAR 6. OPERATION AND MAINTENANCE 7. LUBRICATING OIL PURIFICATION.
Introductory technical guidance for electrical engineers and construction managers interested in generators and exciters for electric generators. Here is what is discussed: 1. ELECTRICAL ENERGY 2. GENERATOR OPERATION 3. TYPES OF GENERATORS 4. AC GENERATORS 5. ALTERNATOR TYPES 6. DESIGN 7. CHARACTERISTICS OF GENERATORS 8. EXCITERS 9. CHARACTERISTICS OF EXCITERS 10. FIELD FLASHING 11. BEARINGS AND LUBRICATION 12. GENERATOR MAINTENANCE 13. INSULATION TESTING 14. POWR PLANT OPERATIONS
Introductory technical guidance for electrical engineers and construction managers interested in auxiliary electric power systems and equipment. Here is what is discussed: 1. INTRODUCTION 2. EMERGENCY POWER SYSTEMS 3. PRIME MOVERS 4. GENERATORS AND EXCITERS 5. SWITCHGEAR 6. OPERATION AND MAINTENANCE 7. LUBRICATING OIL PURIFICATION.
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.
A clear explanation of the technology for producing and delivering electricity Electric Power Systems explains and illustrates how the electric grid works in a clear, straightforward style that makes highly technical material accessible. It begins with a thorough discussion of the underlying physical concepts of electricity, circuits, and complex power that serves as a foundation for more advanced material. Readers are then introduced to the main components of electric power systems, including generators, motors and other appliances, and transmission and distribution equipment such as power lines, transformers, and circuit breakers. The author explains how a whole power system is managed and coordinated, analyzed mathematically, and kept stable and reliable. Recognizing the economic and environmental implications of electric energy production and public concern over disruptions of service, this book exposes the challenges of producing and delivering electricity to help inform public policy decisions. Its discussions of complex concepts such as reactive power balance, load flow, and stability analysis, for example, offer deep insight into the complexity of electric grid operation and demonstrate how and why physics constrains economics and politics. Although this survival guide includes mathematical equations and formulas, it discusses their meaning in plain English and does not assume any prior familiarity with particular notations or technical jargon. Additional features include: * A glossary of symbols, units, abbreviations, and acronyms * Illustrations that help readers visualize processes and better understand complex concepts * Detailed analysis of a case study, including a Web reference to the case, enabling readers to test the consequences of manipulating various parameters With its clear discussion of how electric grids work, Electric Power Systems is appropriate for a broad readership of professionals, undergraduate and graduate students, government agency managers, environmental advocates, and consumers.
This is a comprehensive textbook for the new trend of distributed power generation systems and renewable energy sources in electric power systems. It covers the complete range of topics from fundamental concepts to major technologies as well as advanced topics for power consumers. An Instructor's Manual presenting detailed solutions to all the problems in the book is available from the Wiley editorial department -- to obtain the manual, send an email to [email protected]
Introductory technical guidance for electrical engineers and other professional engineers and construction managers interested in electric power generators. Here is what is discussed: 1. TYPICAL VOLTAGE RATINGS AND SYSTEMS, 2. GENERATORS, 3. GENERATOR LEADS AND SWITCHYARD, 4. SWITCHYARD.