DocumentCode
106079
Title
Multifunctional VSC Controlled Microgrid Using Instantaneous Symmetrical Components Theory
Author
Tummuru, Narsa Reddy ; Mishra, Mahesh K. ; Srinivas, S.
Author_Institution
Dept. of Electr. Eng., Indian Inst. of Technol. Madras, Chennai, India
Volume
5
Issue
1
fYear
2014
fDate
Jan. 2014
Firstpage
313
Lastpage
322
Abstract
This paper proposes a control scheme to control the microgrid side voltage-source converter (μG-VSC) using instantaneous symmetrical components theory. The μ G-VSC with proposed control can be utilized 1) as a bidirectional power sharing converter to control the power flow from the dc side to the ac side and vice versa, based on renewable power available at the dc link; 2) as a power quality compensator with the features of reactive power compensation, load balancing, and mitigation of current harmonics generated by nonlinear loads at the point of common coupling, thus enabling the grid to supply only sinusoidal current at unity power factor; and 3) to damp out the oscillations in the μG-VSC currents effectively using damping filter in the control algorithm. The mathematical models are derived and stability aspects are analyzed in detail through the frequency domain approach. The multifunctional features of the proposed control algorithm are demonstrated using extensive simulation studies and are also validated through experimental results.
Keywords
distributed power generation; frequency-domain analysis; harmonics suppression; load flow control; power conversion harmonics; power supply quality; μG-VSC currents; DC link; bidirectional power sharing converter; current harmonic mitigation; damping filter; frequency domain approach; instantaneous symmetrical component theory; load balancing; mathematical model; microgrid side voltage-source converter; multifunctional VSC-controlled microgrid; multifunctional features; nonlinear loads; point-of-common coupling; power flow control; power quality compensator; reactive power compensation; renewable power; sinusoidal current; unity power factor; Damping; Harmonic analysis; Power conversion; Resonant frequency; Topology; Voltage control; Active damping; instantaneous symmetrical components theory; microgrid; photovoltaic (PV); power quality;
fLanguage
English
Journal_Title
Sustainable Energy, IEEE Transactions on
Publisher
ieee
ISSN
1949-3029
Type
jour
DOI
10.1109/TSTE.2013.2283739
Filename
6672037
Link To Document