Electromagnetic Transients in Power Cables

  • Filipe Faria da Silva
  • Claus Leth Bak

Part of the Power Systems book series (POWSYS)

Table of contents

  1. Front Matter
    Pages i-xiii
  2. Filipe Faria da Silva, Claus Leth Bak
    Pages 1-23
  3. Filipe Faria da Silva, Claus Leth Bak
    Pages 25-46
  4. Filipe Faria da Silva, Claus Leth Bak
    Pages 47-101
  5. Filipe Faria da Silva, Claus Leth Bak
    Pages 103-191
  6. Filipe Faria da Silva, Claus Leth Bak
    Pages 193-228
  7. Filipe Faria da Silva, Claus Leth Bak
    Pages E1-E1

About this book

Introduction

From the more basic concepts to the most advanced ones where long and laborious simulation models are required, Electromagnetic Transients in Power Cables provides a thorough insight into the study of electromagnetic transients and underground power cables. Explanations and demonstrations of different electromagnetic transient phenomena are provided, from simple lumped-parameter circuits to complex cable-based high voltage networks, as well as instructions on how to model the cables.

Supported throughout by illustrations, circuit diagrams and simulation results, each chapter contains exercises, solutions and examples in order to develop a practical understanding of the topics. Harmonic analysis of cable-based networks and instructions on how to accurately model a cable-based network are also covered, including several “tricks” and workarounds to help less experienced engineers perform simulations and analyses more efficiently.

Electromagnetic Transients in Power Cables is an invaluable resource for students and engineers new to the field, but also as a point of reference for more experienced industry professionals.

Keywords

Electromagnetic Transients HV Cable Systems Insulation Coordination Studies Power Harmonics Power Modeling and Simulations

Authors and affiliations

  • Filipe Faria da Silva
    • 1
  • Claus Leth Bak
    • 2
  1. 1.Department 14 Institute of Energy TechnologyAalborg UniversityAalborgDenmark
  2. 2.Institute of Energy TechnologyAalborg UniversityAalborgDenmark

Bibliographic information

  • DOI https://doi.org/10.1007/978-1-4471-5236-1
  • Copyright Information Springer-Verlag London 2013
  • Publisher Name Springer, London
  • eBook Packages Energy
  • Print ISBN 978-1-4471-5235-4
  • Online ISBN 978-1-4471-5236-1
  • Series Print ISSN 1612-1287
  • Series Online ISSN 1860-4676
  • About this book
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