DocumentCode :
1307609
Title :
Mitigation of Converter-Grid Resonance, Grid-Induced Distortion, and Parametric Instabilities in Converter-Based Distributed Generation
Author :
Mohamed, Yasser Abdel-Rady Ibrahim
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Alberta, Edmonton, AB, Canada
Volume :
26
Issue :
3
fYear :
2011
fDate :
3/1/2011 12:00:00 AM
Firstpage :
983
Lastpage :
996
Abstract :
This paper presents a robust interfacing scheme for distributed generation (DG) inverters featuring robust mitigation of converter-grid resonance at parameter variation, grid-induced distortion, and current-control parametric instabilities. The proposed scheme relies on a high-bandwidth current-control loop, which is designed with continuous wideband active damping against converter-grid disturbances and parametric uncertainties by providing adaptive internal-model dynamics. First, a predictive current controller with time-delay compensation is adopted to control the grid-side current with high-bandwidth characteristics to facilitate higher bandwidth disturbance rejection and active-damping control at higher frequencies. Second, to ensure high disturbance rejection of grid distortion, converter resonance at parameter variation, and parametric instabilities, an adaptive internal model for the capacitor voltage and grid-side current dynamics is included within the current-feedback structure. Due to the time-varying and periodic nature of the internal-model dynamics, a neural-network-based estimator is proposed to construct the internal-model dynamics in real time. Theoretical analysis and comparative experimental results are presented to demonstrate the effectiveness of the proposed control scheme.
Keywords :
capacitors; control system synthesis; damping; delays; distributed power generation; electric current control; feedback; neural nets; power convertors; power grids; resonant invertors; time-varying systems; adaptive internal model dynamics; capacitor voltage; continuous wideband active damping; converter-based distributed generation; converter-grid resonance grid-induced distortion; current control parametric instability; current-feedback structure; distributed generation inverter; grid-side current dynamics; high bandwidth current control loop; higher bandwidth disturbance rejection; neural network-based estimator; parameter variation; parametric uncertainty; predictive current controller; robust interfacing scheme; time-delay compensation; time-varying system; Bandwidth; Current control; Damping; Impedance; Power harmonic filters; Resonant frequency; Robustness; Digital control; distributed generation (DG); grid-converter resonance; pulsewidth-modulated (PWM) inverters;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2010.2070878
Filename :
5559482
Link To Document :
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