Title :
Maximum power estimation and droop control of DFIG-based wind turbines in multi-mode microgrids
Author :
Leiqi Zhang ; Jiazuo Hou ; Huanhai Xin ; Zhen Wang ; Deqiang Gan
Author_Institution :
Coll. of Electr. Eng., Zhejiang Univ., Hangzhou, China
Abstract :
This paper proposes a new control scheme for doubly-fed induction generators based wind turbines (DFIG-WT) in microgrids that operate in multiple modes. The DFIG-WT is controlled as a droop voltage source by the rotor side converter, using the indirect stator flux oriented vector (ISFO) control technique. The proposed control scheme enables the DFIG-WT to track the secondary control command given by microgrid central controller (MGCC) via maximum mechanical power estimation and wind power tracking strategy, thus the DFIG-WT is able to participate in system regulation. The maximum mechanical power of the DFIG-WT is estimated by a cascade observer. Consequently, when the microgrid is in grid-tie mode, the DFIG-WT can participate in the control of tie-line power. When the microgrid is in island mode, the DFIG-WT can participate in the restoration of system frequency and voltage. Numerical simulations verify the effectiveness of the proposed control strategy.
Keywords :
asynchronous generators; distributed power generation; power generation control; rotors; stators; wind turbines; DFIG-WT; DFIG-based wind turbine; ISFO control technique; MGCC; cascade observer; doubly-fed induction generator; droop control; droop voltage source; grid-tie mode; indirect stator flux oriented vector; island mode; maximum mechanical power estimation; microgrid central controller; multimode microgrid; rotor side converter; secondary control command; system frequency restoration; tie-line power control; voltage restoration; wind power tracking strategy; Control systems; Estimation; Frequency control; Microgrids; Rotors; Voltage control; Wind speed; DFIG-WT; droop; maximum mechanical power estimation; microgrid; wind power tracking;
Conference_Titel :
Power and Energy Engineering Conference (APPEEC), 2014 IEEE PES Asia-Pacific
DOI :
10.1109/APPEEC.2014.7066130