DocumentCode
60970
Title
Enhanced Grid Fundamental Positive-Sequence Digital Synchronization Structure
Author
Alfonso-Gil, Jose Carlos ; Vague-Cardona, Jose Joaquin ; Orts-Grau, Salvador ; Gimeno-Sales, Francisco J. ; Segui-Chilet, Salvador
Author_Institution
Dept. of Eng. of Ind. Syst. & Design, Univ. Jaume I, Castellón, Spain
Volume
28
Issue
1
fYear
2013
fDate
Jan. 2013
Firstpage
226
Lastpage
234
Abstract
The second-order generalized integrator (SOGI) filter and delayed signal cancellation (DSC) structures have been used separately in order to improve the synchronization systems response in adverse grid conditions. Taking into account its characteristics, this paper proposes a new structure based on a combination of SOGI filter, DSC method, and a software phase-locked loop (S). The enhanced synchronization structure is used to estimate the fundamental positive-sequence component of grid voltages (vs1+) in distorted and asymmetric three-phase systems. DSC and SOGI working in the stationary αβ frame are used to obtain the vs1+ component, while S in a synchronous reference frame (SRF) or the d-q frame is used to obtain vs1+ pulsation and phase. The cutting frequency of the SOGI filter is selected by taking into account the capability of DSC to eliminate determinate order harmonic components. The bandwidth of S is adjusted to achieve a good relation between dynamic response and filtering capability. The SOGI filter has an adaptive structure to modify its cutting frequency when a variation in the fundamental frequency of grid voltages occurs. The performance of the proposed structure is verified through simulations and experimental cases, using a grid set of voltages that include all nonefficient voltage components (distortion, asymmetries, and negative-sequence components).
Keywords
phase locked loops; power harmonic filters; synchronisation; DSC method; delayed signal cancellation structures; grid conditions; grid fundamental positive-sequence digital synchronization structure; negative sequence component; nonefficient voltage component; order harmonic component elimination; second order generalized integrator filter; software phase-locked loop; synchronous reference frame; voltage asymmetries; voltage distortion; Harmonic analysis; Harmonic distortion; Power system harmonics; Synchronization; Time factors; Vectors; Voltage fluctuations; Asymmetries; delayed signal cancellation; distortion; harmonics; phase-locked loop; second-order generalized integrator; synchronization systems;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2012.2219559
Filename
6338323
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