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Introductory technical guidance for electrical engineers and other professional engineers interested in harmonics in electric power systems. Here is what is discussed: 1. HARMONICS DEFINED, 2. HARMONIC SOURCES, 3. HARMONIC TECHNICAL HISTORY, 4. RESONANCE, 5. ELECTRICAL LOADS, 6. NEUTRAL CURRENTS, 7. DERATING POWER EQUIPMENT, 8. GENERATOR CONTROL PROBLEMS, 9. UPS OUTPUT HARMONIC DISTORTION, 10. AC SYSTEM RESPONSE TO HARMONICS, 11. SOLUTION OF HARMONIC PROBLEMS, 12. MEASUREMENT OF NON-SINUSOIDAL CURRENTS AND VOLTAGES, 13. CONCLUSIONS.
Harmonics have always been a problem with industrial loads, but now more and more consumer and commercial power loads are cropping up as sources of harmonic currents. Approaching the problem from both utility and end-user perspectives, Harmonics and Power Systems addresses the most relevant aspects in the generation and propagation of harmonic curr
Die Sicherung einer Stromversorgung in hoher Qualität ist heute von überragender Bedeutung. Die Anwesenheit von Verzerrungen führt zu verschiedensten Problemen. Dieses Buch präsentiert neue Methoden zur Zeit- und Frequenzdomänenmodellierung, Fourieranalyse und Identifikation von Erd- und Leiterimpedanzen von Stromversorgungssystemen.
The deregulation and restructuring of the power utilities industry has made the quality of power supply a worldwide issue. Providing background theory and illustrative examples, this text provides a broad introduction to the issues involved.
Introductory technical guidance for electrical engineers interested in harmonics in electric power distribution systems. Here is what is discussed: 1. HARMONICS DEFINED 2. HARMONIC SOURCES 3. HARMONIC TECHNICAL HISTORY 4. RESONANCE 5. ELECTRICAL LOADS 6. NEUTRAL CURRENTS 7. DERATING POWER EQUIPMENT 8. GENERATOR CONTROL PROBLEMS 9. UPS OUTPUT HARMONIC DISTORTION 10. AC SYSTEM RESPONSE TO HARMONICS 11. SOLUTION OF HARMONIC PROBLEMS 12. MEASUREMENT OF NON-SINUSOIDAL CURRENTS AND VOLTAGES 13. CONCLUSIONS.
Introduction, electronagnetic compatibility in electrical supply systems. Basic mathematical principles. Harmonics and interharmonics. Voltage fluctuation and flicker. Measurement and assement of system perturbations. Countermeasure. Notes on practical procedures.
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.
* Basic power quality strategies and methods to protect electronic systems * Nearly twice the size of the last edition--new chapters on distributed generation and benchmarking--over 200 pages of new material
Introductory technical guidance for electrical engineers and other professional engineers interested in operation of electric power distribution systems. Here is what is discussed: 1. OPERATIONS OVERVIEW, 2. OPERATIONS MANAGEMENT, 3. MAINTENANCE MANAGEMENT, 4. SYSTEM PLANNING STUDIES.
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.