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Understanding Electromagnetic Transients in Power Systems

Understanding Electromagnetic Transients in Power Systems

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IEEE Press Series on Power and Energy Systems

Understanding Electromagnetic Transients in Power Systems

Luiz Cera Zanetta

Technology & Engineering / Power Resources / Electrical

Understand transients and their roles in power systems with this essential guide

Electromagnetic transients are a fundamental aspect of power systems, and therefore a key knowledge area for electrical engineers. Understanding Electromagnetic Transients in Power Systems provides a comprehensive but accessible overview to transients, their underlying theory and mathematics, and their impact in electrical power system design. Its detailed but clear presentation makes it a must-own for students and working engineers alike.

Readers of Understanding Electromagnetic Transients in Power Systems will also find:

  • Deep consideration of the relationship between foundational concepts, mathematical calculations, and impacts on equipment
  • Detailed discussion of topics including time and frequency domain analysis, basic transforms, fundamentals of electrical circuit transients and traveling waves, overvoltage, insulation coordination, and many more
  • Dozens of solved simple examples to facilitate understanding

Understanding Electromagnetic Transients in Power Systems is ideal for electrical engineers and professionals in utilities and equipment manufacturing, as well as for graduate and advanced undergraduate students learning about transients, electrical circuits, and related subjects.

Luiz Cera Zanetta, Jr., PhD, is a Senior Member of IEEE and a full professor at University of São Paulo. His numerous publications and R&D projects for utilities have played a key role in advancing and solidifying the area of electromagnetic transient analysis and equipment specifications for major power plant projects and long-distance interconnections in Brazil. His interests range from electromagnetic transients to Flexible AC Transmission Systems, including dynamic stability analysis, in research domains that are challenging for achieving consistency. Currently his primary interest is to contribute to the enhancement of engineering education.


Publication Date: 08 April 2025
Publisher: Wiley
Imprint: Wiley-IEEE Press
ISBN-13: 9781394240555
Format: Hardback
Page Count: 704
Weight (oz): 36.0

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