Title :
A feedforward compensation based decoupling control strategy for grid-connected inverter with LCL filter
Author :
Qu, K. ; Ye, T. ; Zhao, J. ; Chen, X.
Author_Institution :
Coll. of Electr. Eng., Shanghai Univ. of Electr. Power, Shanghai, China
Abstract :
There are complicated coupling terms between d-axis and q-axis in the mathematical model of grid-connected voltage-source inverter (VSI) with LCL filter in synchronous reference frame. As to this, a new feedforward compensation based decoupling control strategy, which is realized by making use of the equivalence transformation principle to eliminate the interaction caused by the coupling terms gradually by feedforward compensation, is proposed in this paper. Proposed decoupling control is verified by designing the simulink model of dual closed current loop control strategy according to the decoupling result. Proposed control strategy can not only realize the active and reactive power control independently by eliminating the coupling term between d-axis and q-axis, but also effectively enhance the quality of grid-connected current and improve the dynamic performance. It is verified by the simulation results.
Keywords :
closed loop systems; compensation; electric current control; feedforward; invertors; power filters; power grids; reactive power control; LCL filter; coupling terms; decoupling control strategy; dual closed current loop control strategy; dynamic performance; equivalence transformation principle; feedforward compensation; grid-connected voltage-source inverter; reactive power control; simulink model; Couplings; Feedforward neural networks; Filtering theory; Mathematical model; Power harmonic filters; Pulse width modulation; Reactive power; LCL filter; decoupling control; dual closed-loop; feedforward compensation;
Conference_Titel :
Power Electronics and ECCE Asia (ICPE-ECCE Asia), 2015 9th International Conference on
Conference_Location :
Seoul
DOI :
10.1109/ICPE.2015.7168118