DocumentCode
1289313
Title
Analysis of a hybrid controlled three-phase grid-connected inverter with harmonics compensation in synchronous reference frame
Author
Sha, Deshang ; Wu, Dalei ; Liao, Xiaofeng
Author_Institution
Sch. of Autom., Beijing Inst. of Technol., Beijing, China
Volume
4
Issue
7
fYear
2011
Firstpage
743
Lastpage
751
Abstract
The power quality of three-phase grid-connected inverters has drawn attention with the increasing numbers of distributed generation systems. In order to effectively eliminate the harmonics in output currents, a hybrid system based on proportional-integral (PI) control and repetitive control (RC) implemented in the synchronous reference frame (SRF) is presented. Based on the reference frame transformation, the use of a repetitive controller is not for achieving fundamental reference current tracking but attaining the harmonics compensation, which is different from the RC designed in a static reference frame. In addition, analyses of the SRF-based hybrid controlled converter system, including stability constraints, harmonics rejection principles and the relationship between the PI controller and repetitive controller, are further developed in frequency domain and time domain. Finally, experimental results are demonstrated to validate the steady-state and dynamic performance of the proposed hybrid controlled system.
Keywords
PI control; distributed power generation; harmonics suppression; hybrid power systems; invertors; power grids; power supply quality; power system stability; time-frequency analysis; PI controller; RC designed; converter; distributed generation systems; frequency domain; harmonics compensation; hybrid controlled system; power quality; proportional-integral control; reference frame transformation; repetitive control; stability; static reference frame; synchronous reference frame; three-phase grid connected inverters; time domain;
fLanguage
English
Journal_Title
Power Electronics, IET
Publisher
iet
ISSN
1755-4535
Type
jour
DOI
10.1049/iet-pel.2010.0231
Filename
5972001
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