DocumentCode :
83925
Title :
Transition Management of Microgrids With High Penetration of Renewable Energy
Author :
Qiang Fu ; Nasiri, A. ; Bhavaraju, V. ; Solanki, A. ; Abdallah, Tarek ; Yu, David C.
Author_Institution :
Eaton Global Res. & Technol., Menomonee Falls, WI, USA
Volume :
5
Issue :
2
fYear :
2014
fDate :
Mar-14
Firstpage :
539
Lastpage :
549
Abstract :
Microgrids are receiving attention due to the increasing need to integrate distributed generations and to ensure power quality and to provide energy surety to critical loads. Some of the main topics concerning microgrids are transients and stability concerns during transitions including intentional and unintentional islanding and reconnection. In this paper, the standard IEEE 34 bus distribution feeder is adapted and managed as a microgrid by adding distributed generations and load profiles. Supervisory power managements have been defined to manage the transitions and to minimize the transients on voltage and frequency. Detailed analyses for islanding, reconnection, and black start are presented for various conditions. The proposed control techniques accept inputs from local measurements and supervisory controls in order to manage the system voltage and frequency. An experimental system has been built which includes three 250 kW inverters emulating natural gas generator, energy storage, and renewable source. The simulation and experimental results are provided which verifies the analytical presentation of the hardware and control algorithms.
Keywords :
IEEE standards; distributed power generation; invertors; natural gas technology; power system management; renewable energy sources; IEEE 34 bus distribution feeder; energy storage; inverters; microgrids; natural gas generator; power 250 kW; power quality; renewable energy; renewable source; supervisory power managements; transition management; unintentional islanding; Energy storage; Frequency control; Generators; Microgrids; Natural gas; Reactive power; Voltage control; Control; islanding; microgrid; transients; transition;
fLanguage :
English
Journal_Title :
Smart Grid, IEEE Transactions on
Publisher :
ieee
ISSN :
1949-3053
Type :
jour
DOI :
10.1109/TSG.2013.2286952
Filename :
6656952
Link To Document :
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