Hilbert transform based control algorithm of the DG interface for voltage flicker mitigation

Mostafa Ibrahim Mohamed Marei; Abdel-Galil, Tarek K.; El-Saadany, Ehab F.; Salama, Magdy M.A.;

Abstract


Distributed Generation (DG) is used widely in the modern distribution systems. This paper proposes a novel functionality of the interface between DG and the utility network to mitigate the voltage flicker and to regulate the voltage at the Point of Common Coupling (PCC) in addition to its main function of controlling the power flow. A new control algorithm for the DG interface based on the Hilbert transform (HT) is presented. The HT is employed as an effective technique for tracking the voltage flicker levels in distribution systems. The mathematical simplicity of the proposed technique, compared with the commonly used algorithms in the literature, renders them competitive candidates for the on-line tracking of voltage flicker. The accurate tracking of the HT facilitates its implementation for the control of flicker mitigation devices. Simulation results are provided to verify the tracking capabilities of the HT and to evaluate the performance of the proposed DG interface for multifunction operation. © 2005 IEEE.


Other data

Title Hilbert transform based control algorithm of the DG interface for voltage flicker mitigation
Authors Mostafa Ibrahim Mohamed Marei ; Abdel-Galil, Tarek K.; El-Saadany, Ehab F.; Salama, Magdy M.A.
Keywords Distributed generation interface;Envelope tracking;Flicker mitigation;Hilbert transform;Power quality;Voltage control
Issue Date 1-Apr-2005
Publisher IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Journal IEEE Transactions on Power Delivery 
Volume 20
Issue 2
Start page 1129
End page 1133
ISSN 08858977
DOI 10.1109/TPWRD.2004.843461
Scopus ID 2-s2.0-17844409352
Web of science ID WOS:000228095900078

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