Book contents
- Frontmatter
- Dedication
- Contents
- Preface
- Notation
- Part I Fundamentals
- Part II Networked Microgrids
- 3 Compositional Networked Microgrid Power Flow
- 4 Resilient Networked Microgrids through Software-Defined Networking
- 5 Formal Analysis of Networked Microgrids Dynamics
- 6 Active Fault Management for Networked Microgrids
- 7 Cyberattack-Resilient Networked Microgrids
- 8 Networked DC Microgrids
- Part III Prospect
- Index
6 - Active Fault Management for Networked Microgrids
from Part II - Networked Microgrids
Published online by Cambridge University Press: 15 April 2021
- Frontmatter
- Dedication
- Contents
- Preface
- Notation
- Part I Fundamentals
- Part II Networked Microgrids
- 3 Compositional Networked Microgrid Power Flow
- 4 Resilient Networked Microgrids through Software-Defined Networking
- 5 Formal Analysis of Networked Microgrids Dynamics
- 6 Active Fault Management for Networked Microgrids
- 7 Cyberattack-Resilient Networked Microgrids
- 8 Networked DC Microgrids
- Part III Prospect
- Index
Summary
This chapter introduces a powerful online distributed and asynchronous active fault management (DA-AFM) tool which proactively manages the fault currents by controlling the power electronic interfaces and eliminates the barriers against networked microgrids resilience and the ultrareliable operations of DERs/microgrids. Upon fault occurrence, DA-AFM is able to maintain the total fault current unchanged to avoid detrimental impact on the power grid, to eliminate the damaging power ripples for inverters in DERs/microgrids, and to ensure that the power flow of each individual microgrid is identical before and after fault to avoid loss of loads and maintain networked microgrid stability.
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- Networked Microgrids , pp. 134 - 157Publisher: Cambridge University PressPrint publication year: 2021