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Advanced Smart Grid Functionalities Based on PowerFactory

  • Francisco Gonzalez-Longatt
  • José Luis Rueda Torres

Part of the Green Energy and Technology book series (GREEN)

Table of contents

  1. Front Matter
    Pages i-xiv
  2. Francisco Gonzalez-Longatt, José Luis Rueda Torres
    Pages 1-18
  3. J. Garcia-Villalobos, I. Zamora, M. Marinelli, P. Eguia, J. I. San Martin
    Pages 67-91
  4. Francisco Gonzalez-Longatt, S. Alhejaj, A. Marano-Marcolini, José Luis Rueda Torres
    Pages 93-124
  5. I. Tyuryukanov, M. Naglič, M. Popov, M. A. M. M. van der Meijden
    Pages 279-299
  6. Abdul W. Korai, Elyas Rakhshani, José Luis Rueda Torres, István Erlich
    Pages 355-371
  7. Francisco Gonzalez-Longatt, José Luis Rueda Torres
    Pages E1-E1

About this book

Introduction

This book consolidates some of the most promising advanced smart grid functionalities and provides a comprehensive set of guidelines for their implementation/evaluation using DIgSILENT Power Factory.

It includes specific aspects of modeling, simulation and analysis, for example wide-area monitoring, visualization and control, dynamic capability rating, real-time load measurement and management, interfaces and co-simulation for modeling and simulation of hybrid systems. It also presents key advanced features of modeling and automation of calculations using PowerFactory, such as the use of domain-specific (DSL) and DIgSILENT Programming (DPL) languages, and utilizes a variety of methodologies including theoretical explanations, practical examples and guidelines.

Providing a concise compilation of significant outcomes by experienced users and developers of this program, it is a valuable resource for postgraduate students and engineers working in power-system operation and planning.


Keywords

Sustainable Electricity Networks Advanced Smart Grid Functionalities Smart Grid Modelling Smart Grid Simulation DIgSILENT PowerFactory. Power System Operation

Editors and affiliations

  • Francisco Gonzalez-Longatt
    • 1
  • José Luis Rueda Torres
    • 2
  1. 1.LoughboroughUnited Kingdom
  2. 2.Department of Electrical Sustainable EnergyDelft University of TechnologyDelftThe Netherlands

Bibliographic information

  • DOI https://doi.org/10.1007/978-3-319-50532-9
  • Copyright Information Springer International Publishing AG 2018
  • Publisher Name Springer, Cham
  • eBook Packages Energy
  • Print ISBN 978-3-319-50531-2
  • Online ISBN 978-3-319-50532-9
  • Series Print ISSN 1865-3529
  • Series Online ISSN 1865-3537
  • Buy this book on publisher's site
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