Modeling, Operation, and Analysis of DC Grids
eBook - ePub

Modeling, Operation, and Analysis of DC Grids

From High Power DC Transmission to DC Microgrids

  1. 388 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Modeling, Operation, and Analysis of DC Grids

From High Power DC Transmission to DC Microgrids

About this book

Modeling, Operation, and Analysis of DC Grids presents a unified vision of direct current grids with their core analysis techniques, uniting power electronics, power systems, and multiple scales of applications. Part one presents high power applications such as HVDC transmission for wind energy, faults and protections in HVDC lines, stability analysis and inertia emulation. The second part addresses current applications in low voltage such as microgrids, power trains and aircraft applications. All chapters are self-contained with numerical and experimental analysis. - Provides a unified, coherent presentation of DC grid analysis based on modern research in power systems, power electronics, microgrids and MT-HVDC transmission - Covers multiple scales of applications in one location, addressing DC grids in electric vehicles, microgrids, DC distribution, multi-terminal HVDC transmission and supergrids - Supported by a unified set of MATLAB and Simulink test systems designed for application scenarios

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Yes, you can access Modeling, Operation, and Analysis of DC Grids by Alejandro Garces in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Energy. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Modeling, Operation, and Analysis of DC Grids
  2. Cover
  3. Title Page
  4. Copyright
  5. Contents
  6. List of contributors
  7. 1 Introduction
  8. 2 HVDC transmission for wind energy
  9. 3 DC faults in HVDC
  10. 4 Eigenvalue-based analysis of small-signal dynamics and stability in DC grids
  11. 5 Inertia emulation with HVDC transmission systems
  12. 6 Real-time simulation of a transient model for HVDC cables in SOC-FPGA
  13. 7 Probabilistic analysis in DC grids
  14. 8 Stationary-state analysis of low-voltage DC grids
  15. 9 Stability analysis and hierarchical control of DC power networks
  16. 10 Digital control strategies of DC–DC converters in automotive hybrid powertrains
  17. 11 Adaptive control for second-order DC–DC converters: PBC approach
  18. 12 Advances in predictive control of DC microgrids
  19. 13 Modeling and control of DC grids within more-electric aircraft
  20. Index