DocumentCode :
1240625
Title :
Microgrid power quality enhancement using a three-phase four-wire grid-interfacing compensator
Author :
Li, Yunwei ; Vilathgamuwa, D. Mahinda ; Loh, Poh Chiang
Author_Institution :
Center for Adv. Power Electron., Nanyang Technol. Univ., Singapore
Volume :
41
Issue :
6
fYear :
2005
Firstpage :
1707
Lastpage :
1719
Abstract :
This paper presents a three-phase four-wire grid-interfacing power quality compensator for microgrid applications. The compensator is proposed for use with each individual distributed generation (DG) system in the microgrid and consists of two four-phase-leg inverters (a shunt and a series), optimally controlled to achieve an enhancement of both the quality of power within the microgrid and the quality of currents flowing between the microgrid and the utility system. During utility grid voltage unbalance, the four-phase-leg compensator can compensate for all the unwanted positive-, negative-, and zero-sequence voltage-current components found within the unbalanced utility. Specifically, the shunt four-leg inverter is controlled to ensure balanced voltages within the microgrid and to regulate power sharing among the parallel-connected DG systems. The series inverter is controlled complementarily to inject negative- and zero-sequence voltages in series to balance the line currents, while generating zero real and reactive power. During utility voltage sags, the series inverter can also be controlled using a newly proposed flux-charge current-limiting algorithm to limit the flow of large fault currents between the micro- and utility grids. The performance of the proposed compensator has been verified in simulations and experimentally using a laboratory prototype.
Keywords :
distributed power generation; fault current limiters; invertors; optimal control; power control; power grids; power supply quality; power system control; power system faults; distributed generation system; fault currents; flux-charge current-limiting algorithm; four-phase-leg inverters; microgrid power quality enhancement; optimal control; power sharing regulation; three-phase four-wire grid-interfacing compensator; voltage sages; Control systems; Distributed control; Fault currents; Inverters; Laboratories; Optimal control; Power generation; Power quality; Reactive power control; Voltage control; Fault current limitation; four-phase-leg inverter; microgrid; power quality compensator; sequence voltages/currents;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2005.858262
Filename :
1542327
Link To Document :
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