Title :
Advanced current control based on linear quadratic regulators for 3-phase grid-connected inverters
Author :
Riming Shao ; Shuying Yang ; Rong Wei ; Liuchen Chang
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of New Brunswick, Fredericton, NB, Canada
Abstract :
This paper proposes an optimal current control with linear quadratic regulators for 3-phase grid-connected inverters. Because the 3-phase current control is a multivariable control problem with multiple interconnected loops, the traditional control methods, like proportional-integral-derivative control and predictive control, have the difficulty in optimizing their parameters. The proposed control algorithm, however, uses the linear quadratic regulator technique to synthesize the state feedback gains and achieve optimal performance. This paper also introduces the disturbance decoupling strategy to eliminate the impact of the disturbance of grid voltage variation. The system modeling and control design procedure are discussed in the paper. And simulation and experimental results are presented in the paper to verify the effectiveness of the proposed current control algorithm.
Keywords :
control system synthesis; electric current control; invertors; linear systems; multivariable control systems; optimal control; power grids; power system interconnection; power system reliability; 3-phase current control; 3-phase grid-connected inverter; advanced current control; control design procedure; disturbance decoupling strategy; grid voltage variation disturbance elimination; linear quadratic regulator technique; multiple interconnected loop; multivariable control problem; optimal current control; Current control; Industrial electronics; Inverters; Pulse width modulation; State feedback; Steady-state; Voltage control; LQR; current control; grid-connected inverter;
Conference_Titel :
Power Electronics for Distributed Generation Systems (PEDG), 2015 IEEE 6th International Symposium on
Conference_Location :
Aachen
DOI :
10.1109/PEDG.2015.7223076