Title :
A direct voltage unbalance compensation strategy for islanded microgrids
Author :
Xin Zhao ; Xiaohua Wu ; Lexuan Meng ; Guerrero, Josep M. ; Vasquez, Juan C.
Author_Institution :
Sch. of Autom., Northwestern Polytech. Univ., Xi´an, China
Abstract :
In this paper, a control strategy with low bandwidth communications for paralleled three-phase inverters is proposed to achieve satisfactory voltage unbalance compensation. The proposed control algorithm mainly consists of voltage/current inner loop controllers, a droop controller, a selective virtual impedance loop, and an unbalance compensator. The inner loop controllers are based on the stationary reference frame to better mitigate the voltage distortion under nonlinear loads. Droop control and selective virtual impedance loop achieve accurate current-sharing when supplying both linear and nonlinear loads. Moreover, by adjusting voltage references according to the amplitude of the negative sequence voltage, the unbalance factor, which is mainly caused by single phase generators/loads, can be mitigated to an extremely low value. Finally, an AC microgrid which includes three three-phase three-leg inverters was tested in order to validate the proposed control strategy.
Keywords :
compensation; distributed power generation; invertors; reference circuits; AC microgrid; bandwidth communication; control algorithm; current-sharing; direct voltage unbalance compensation strategy; droop controller; inner loop controller; islanded microgrid; negative sequence voltage; nonlinear load; paralleled three-phase inverter; single phase generator; stationary reference frame; three-phase three-leg inverter; virtual impedance loop; voltage distortion mitigation; voltage reference adjustment; Harmonic analysis; Impedance; Inverters; Power harmonic filters; Reactive power; Transfer functions; Voltage control; Microgrids; droop control; virtual impedance; voltage unbalance compensation;
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2015 IEEE
Conference_Location :
Charlotte, NC
DOI :
10.1109/APEC.2015.7104818