Differential Flatness-Based Performance Enhancement of a Vector Controlled VSC with an LCL-Filter for Weak Grids
Author | Khalid, Hassan Abdullah |
Author | Cecati, Carlo |
Author | Al-Emadi, Nasser Ahmed |
Author | Gastli, Adel |
Author | Ben-Brahim, Lazhar |
Available date | 2022-11-15T11:28:10Z |
Publication Date | 2021-2-22 |
Publication Name | IEEE Access |
Identifier | http://dx.doi.org/10.1109/ACCESS.2021.3061141 |
Citation | Khalid, H. A., Cecati, C., Al-Emadi, N. A., Gastli, A., & Ben-Brahim, L. (2021). Differential Flatness-Based Performance Enhancement of a Vector Controlled VSC With an LCL-Filter for Weak Grids. IEEE Access, 9, 33557-33568. |
Abstract | In this paper, a novel single-loop flatness-based controller (FBC) is proposed to control the grid-side current in a shunt converter connected to a weak grid through an LCL-filter. After its mathematical description, the paper reports controller implementation and some performance comparisons with two distinct implementations of the widely diffused vector current control approach, during balanced and unbalanced grid voltages, and weak grid conditions. Obtained results highlight higher tracking capability and better dynamic response of the proposed FBC. Moreover, because of its reduced negative conductance region, unstable behaviors that can be observed in weak grids appear significantly improved due to a reduced influence of the phase-locked loop system. |
Language | en |
Publisher | IEEE |
Subject | Flatness-based control LCL-filter vector current control voltage source converter weak grids |
Type | Article |
Pagination | 33557-33568 |
Volume Number | 9 |
ESSN | 2169-3536 |
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Electrical Engineering [2649 items ]