UM
Status已發表Published
Design of a thyristor controlled LC compensator for wind farm dynamic reactive power compensation in smart grid
Wang, L.; Lam, C. S.; Wong, M. C.
2017
Source PublicationIEEE Transactions on Smart Grid
ISSN1949-3053
Pages409-417
AbstractThis paper presents a thyristor controlled LC (TCLC) compensator for dynamic reactive power compensation in a smart grid system. Compared with the traditional static var compensators (SVCs) like a fixed capacitor-thyristor controlled reactor (FC-TCR) which generates low order harmonic currents, the proposed TCLC can significantly mitigate the injection of harmonic currents. In this paper, the design of the TCLC parameters is investigated with the considerations of its reactive power compensation range and harmonic currents rejection. And a control method based on the generalized instantaneous reactive power theory is proposed. Moreover, representative simulation and experimental results of the proposed three-phase three-wire TCLC are presented to show its effectiveness in dynamic reactive power compensation in comparison with the traditional FC-TCR and parallel combination of FC-TCR and passive power filter (FC-TCR+PPF).
KeywordHarmonic currents rejection reactive power compensation smart grid thyristor controlled LC (TCLC) compensator wind energy
Language英語English
The Source to ArticlePB_Publication
PUB ID20860
Document TypeJournal article
CollectionUniversity of Macau
Corresponding AuthorLam, C. S.
Recommended Citation
GB/T 7714
Wang, L.,Lam, C. S.,Wong, M. C.. Design of a thyristor controlled LC compensator for wind farm dynamic reactive power compensation in smart grid[J]. IEEE Transactions on Smart Grid, 2017, 409-417.
APA Wang, L.., Lam, C. S.., & Wong, M. C. (2017). Design of a thyristor controlled LC compensator for wind farm dynamic reactive power compensation in smart grid. IEEE Transactions on Smart Grid, 409-417.
MLA Wang, L.,et al."Design of a thyristor controlled LC compensator for wind farm dynamic reactive power compensation in smart grid".IEEE Transactions on Smart Grid (2017):409-417.
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