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Microgrid technology and engineering application

Author: Fusheng Li; Ruisheng Li; Fengquan Zhou
Publisher: Amsterdam : Academic Press, 2015.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book is based on the authors' research and microgrid projects since 2009, and is the most up-to-date resource on the development of microgrid technologies. In addition to basic facility and network design concepts, it covers related subjects including power supply programming and energy optimization, which means it can serve as a single volume reference to the complete microgrid system implementation.
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Additional Physical Format: Print version
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Fusheng Li; Ruisheng Li; Fengquan Zhou
ISBN: 9780128036303 0128036303
OCLC Number: 932059158
Description: 1 online resource
Contents: Cover; Title Page; Copyright Page; Contents; Foreword; Preface; Chapter 1 --
Overview of microgrid; 1.1 --
History; 1.2 --
Current situation of microgrid outside China and analysis; 1.2.1 --
USA; 1.2.2 --
Japan; 1.2.3 --
European Union; 1.3 --
Analysis of current status in China; 1.4 --
Prospects; Chapter 2 --
Composition and classification of the microgrid; 2.1 --
Composition; 2.2 --
Structure; 2.2.1 --
Distribution network dispatch layer; 2.2.2 --
Centralized control layer; 2.2.3 --
Local control layer; 2.3 --
Operation modes; 2.3.1 --
Grid-connected operation; 2.3.2 --
Islanded operation. 2.4 --
Control modes2.4.1 --
Microgrid control modes; 2.4.1.1 --
Master-slave mode; 2.4.1.2 --
Peer-to-peer mode; 2.4.1.3 --
Combined mode; 2.4.2 --
Inverter control modes; 2.4.2.1 --
P/Q control; 2.4.2.2 --
U/f control; 2.4.2.3 --
Droop control; 2.5 --
Integration voltage class; 2.6 --
Classification; 2.6.1 --
By function demand; 2.6.1.1 --
Simple microgrid; 2.6.1.2 --
Multi-DG microgrid; 2.6.1.3 --
Utility microgrid; 2.6.2 --
By capacity; 2.6.2.1 --
Simple microgrid; 2.6.2.2 --
Corporate microgrid; 2.6.2.3 --
Feeder area microgrid; 2.6.2.4 --
Substation area microgrid; 2.6.2.5 --
Independent microgrid. 2.6.3 --
By AC/DC type2.6.3.1 --
DC microgrid; 2.6.3.2 --
AC microgrid; 2.6.3.3 --
AC/DC hybrid microgrid; Chapter 3 --
Microgrid and distributed generation; 3.1 --
Concepts and characteristics; 3.2 --
Photovoltaics; 3.2.1 --
Independent PV power system; 3.2.2 --
Grid-connected PV power system; 3.3 --
Wind power; 3.3.1 --
Independent wind power system; 3.3.2 --
Grid-connected wind power system; 3.4 --
Microturbine; 3.4.1 --
Components of microturbine; 3.4.2 --
High-speed AC generator; 3.4.3 --
Regenerator; 3.4.4 --
Converter system; 3.4.5 --
Control system; 3.5 --
Other types of DGs; 3.5.1 --
Geothermal energy. 3.5.2 --
Biomass energy3.5.3 --
Ocean energy; 3.6 --
Energy storage; 3.6.1 --
Pumped storage; 3.6.2 --
Compressed air ES; 3.6.3 --
Flywheel ES; 3.6.4 --
Superconducting magnetic ES; 3.6.5 --
Supercapacitor; 3.6.6 --
Battery; Chapter 4 --
Control and operation of the microgrid; 4.1 --
Three-state control of independent Ưmicrogrid; 4.1.1 --
Steady-state constant-frequency and constant-voltage control; 4.1.2 --
Dynamic generator tripping and load shedding control; 4.1.3 --
Transient fault protection; 4.2 --
Inverter control; 4.2.1 --
Grid-tie inverter control; 4.2.2 --
Power converter system control. 4.3 --
Grid connection and separation control4.3.1 --
Grid connection control; 4.3.1.1 --
Conditions for grid connection; 4.3.1.2 --
Grid-connection logic; 4.3.2 --
Grid separation control; 4.3.2.1 --
Islanding of microgrid; 4.3.2.2 --
Transfer from grid-connected mode to islanded mode; 4.4 --
Operation; 4.4.1 --
Grid-connected operation; 4.4.2 --
Islanded operation; Chapter 5 --
Protection of the microgrid; 5.1 --
Special fault characteristics of DG; 5.2 --
Effects of microgrid on relay Ưprotection of the distribution network; 5.2.1 --
Protection of a traditional distribution network. 5.2.2 --
Protection of a traditional LV distribution Ưnetwork.
Responsibility: Fusheng Li, Ruisheng Li, Fengquan Zhou.

Abstract:

This book is based on the authors' research and microgrid projects since 2009, and is the most up-to-date resource on the development of microgrid technologies. In addition to basic facility and network design concepts, it covers related subjects including power supply programming and energy optimization, which means it can serve as a single volume reference to the complete microgrid system implementation.

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