Superconducting Magnetic Energy Storage in Power Grids

Energy storage is key to integrating renewable power. Superconducting magnetic energy storage (SMES) systems store power in the magnetic field in a superconducting coil. Once the coil is charged, the current will not stop and the energy can in theory be stored indefinitely. This technology avoids th...

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Bibliographic Details
Main Author Ali, Mohd. Hasan
Format eBook
LanguageEnglish
Published Stevenage The Institution of Engineering and Technology 2022
Institution of Engineering and Technology (The IET)
Institution of Engineering & Technology
Institution of Engineering and Technology
Edition1
SeriesIET Energy engineering series
Subjects
Online AccessGet full text
ISBN1839535008
9781839535000
DOI10.1049/PBPO210E

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Table of Contents:
  • Chapter 1: Introduction -- Chapter 2: Overview of SMES technology -- Chapter 3: Superconducting magnetic energy storage control methods -- Chapter 4: Transient stability enhancement of power grids by superconducting magnetic energy storage -- Chapter 5: Enhancement of load frequency control in interconnected microgrids by SMES -- Chapter 6: Dynamic performance enhancement of power grids by coordinated operation of SMES and other control systems -- Chapter 7: Artificial intelligent controllers for SMES for transient stability enhancement -- Chapter 8: Cybersecurity issues in intelligent control-based SMES systems -- Chapter 9: Outlook
  • Title Page Table of Contents 1. Introduction 2. Overview of SMES Technology 3. Superconducting Magnetic Energy Storage Control Methods 4. Transient Stability Enhancement of Power Grids by Superconducting Magnetic Energy Storage 5. Enhancement of Load Frequency Control in Interconnected Microgrids by SMES 6. Dynamic Performance Enhancement of Power Grids by Coordinated Operation of SMES and other Control Systems 7. Artificial Intelligent Controllers for SMES for Transient Stability Enhancement 8. Cybersecurity Issues in Intelligent Control-Based SMES Systems 9. Outlook Index