Title :
Variable Structure Direct Torque Control and grid connected for wind energy conversion system based on the PMSG
Author :
Errami, Y. ; Maaroufi, Mohamed ; Ouassaid, Mohammed
Author_Institution :
Dept. of Electr. Eng., Mohammed V-Agdal Univ., Rabat, Morocco
Abstract :
This study proposes a novel Variable Structure Direct Torque Control (VS-DTC) scheme for Wind Farm (WF) based on the Permanent Magnet Synchronous Generators (PMSGs) in order to maximize the generated power from wind turbines. The 30KW wind farm consists of 3 PMSGs based 10KW generators connected to a common DC-bus. Each generator of the farm is connected to the DC-bus through a rectifier, but the DC-bus is connected to the grid through only one DC/AC inverter. The efficiency of the variable speed farm can be greatly improved using an appropriate control strategy. In addition, WF has strong nonlinear multivariable with many uncertain factors and disturbances. Consequently, the control strategy combines the technique of DTC and Sliding Mode (SM) nonlinear control theory. Considering the variation of wind speed, the PMSGs side converters are used to achieve Maximum Power Point Tracking (MPPT), while the grid-side converter regulates DC-link voltage, injects the generated power into the AC network and it´s used to achieve unity power factor. The employed control strategy provides an optimal control solution for wind farm systems based on the PMSG.
Keywords :
direct energy conversion; maximum power point trackers; multivariable control systems; nonlinear control systems; optimal control; permanent magnet generators; power factor; power generation control; power grids; rectifiers; synchronous generators; torque control; variable structure systems; wind power; wind turbines; DC-AC inverter; DC-bus; DC-link voltage; MPPT; PMSG based generator; SM nonlinear control theory; VS-DTC scheme; WF; grid connected; maximum power point tracking; nonlinear multivariable; optimal control solution; permanent magnet synchronous generators; power 10 kW; power 30 kW; rectifier; sliding mode nonlinear control theory; unity power factor; variable speed farm; variable structure direct torque control; wind energy conversion system; wind farm; wind turbines; Generators; Rotors; Stators; Torque; Voltage control; Wind speed; Wind turbines; DTC; Lyapunov theory; MPPT; PMSGs; Sliding mode control; Unity power factor; Wind Farm;
Conference_Titel :
Complex Systems (ICCS), 2012 International Conference on
Conference_Location :
Agadir
Print_ISBN :
978-1-4673-4764-8
DOI :
10.1109/ICoCS.2012.6458524