DocumentCode :
1385276
Title :
Adaptive Current Control for Grid-Connected Converters With LCL Filter
Author :
Massing, Jorge Rodrigo ; Stefanello, Márcio ; Gründling, Hilton Abílio ; Pinheiro, Humberto
Author_Institution :
Group of Power Electron. & Control (GEPOC), Fed. Univ. of Santa Maria, Santa Maria, Brazil
Volume :
59
Issue :
12
fYear :
2012
Firstpage :
4681
Lastpage :
4693
Abstract :
This paper presents a discrete-time adaptive current controller for grid-connected pulse width modulation voltage source converters with LCL filter. The main attribute of the proposed current controller is that, in steady state, the damping of the LCL resonance does not depend on the grid characteristic since the adaptive feedback gains ensure a predefined behavior for the closed-loop current control. An overview of model reference adaptive state feedback theory is presented aiming to give the reader the required background for the adaptive current control design. The digital implementation delay is included in the model, and the stability concerning the variation of the grid parameters is analyzed in detail. Furthermore, current distortions due to the grid background voltage are rejected without using the conventional stationary resonant controllers or the synchronous proportional-plus-integral controllers. Simulation and experimental results are presented to validate the analysis and to demonstrate the good performance of the proposed controller for grid-connected converters subjected to large grid impedance variation and grid voltage disturbances.
Keywords :
PI control; PWM power convertors; adaptive control; closed loop systems; damping; discrete time systems; distortion; electric current control; filters; power grids; resonance; stability; state feedback; LCL filter; LCL resonance damping; adaptive feedback gains; closed-loop current control; current distortions; digital implementation delay; discrete-time adaptive current controller; grid background voltage; grid characteristics; grid impedance variation; grid parameters analysis; grid voltage disturbance; grid-connected pulse width modulation voltage source converters; model reference adaptive state feedback theory; stationary resonant controllers; synchronous proportional-plus-integral controllers; Adaptation models; Current measurement; Impedance; Power system stability; Stability analysis; State feedback; Voltage control; Current control; LCL filter; grid-connected converters; model reference adaptive control (MRAC);
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2011.2177610
Filename :
6092480
Link To Document :
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