Title :
A new topology and control strategy for centralized ride-through capability of wind farm
Author :
Hong, Lucheng ; Jiang, Qirong ; Wang, Liang ; Du, Wei
Abstract :
As the penetration of large-scale grid-connected wind farms increasing year by year, low voltage ride-through (LVRT) capability has been an extremely important criterion for grid-connected wind farms required by many countries to improve power quality at grid fault. A new dynamic voltage restorer (DVR) topology based on modular multilevel converters (MMC) is proposed in this paper to improve LVRT capability of wind farms. Related control strategies and pulse width modulation (PWM) method are also proposed, to keep wind farm terminal voltage normal and voltages of MMC fly-capacitors in balance during voltage sag period; a special energy sharing topology is applied on DC sides of the device, three phase DC bus voltages can kept in balance through the given control strategy. PSCAD/EMTDC simulations are carried out to prove the effectiveness of the proposed technique and some related conclusions and comments are summarized.
Keywords :
PWM power convertors; power generation control; power supply quality; wind power plants; DVR topology; LVRT capability; MMC fly-capacitor voltage; PSCAD-EMTDC simulations; PWM method; centralized ride-through capability; control strategy; dynamic voltage restorer topology; energy sharing topology; grid fault; large-scale grid-connected wind farms; low-voltage ride-through capability; modular multilevel converters; power quality; pulse width modulation method; terminal voltage; three-phase DC bus voltage; voltage sag period; Converters; EMTDC; PSCAD; Pulse width modulation; Voltage control; Voltage fluctuations; Wind farms; dynamic voltage restorer; modular multilevel converter; voltage sag; wind power;
Conference_Titel :
IECON 2012 - 38th Annual Conference on IEEE Industrial Electronics Society
Conference_Location :
Montreal, QC
Print_ISBN :
978-1-4673-2419-9
Electronic_ISBN :
1553-572X
DOI :
10.1109/IECON.2012.6389334