DocumentCode :
2121920
Title :
Optimal system control of a back-to-back power converter for wind grid-connected converter
Author :
Buticchi, Giampaolo ; Lorenzani, Emilio ; Bianchini, Claudio
Author_Institution :
Dept. of Inf. Eng. (DII), Univ. of Parma, Parma, Italy
fYear :
2012
fDate :
9-12 Sept. 2012
Firstpage :
195
Lastpage :
200
Abstract :
The most common topology for micro wind turbine systems is composed of the wind turbine directly connected to a Permanent Magnet Synchronous Generator (PMSG) followed by a AC/DC/AC converter. The converter is realized with a AC/DC passive rectifier, a DC/DC boost converter and a DC/AC full-bridge inverter which injects the electric power into the grid. Considering the cost reduction of power switches and Digital Signal Processors (DSP), back-to-back inverter topologies have to be considered for new projects, since they allow to obtain better energy productivity of the wind systems. In this paper a complete solution based on back-to-back topology is presented. This solution includes the sensorless vector control for the PMSG, the Maximum Power Point Tracker (MPPT) algorithm, the d-q vector control of the single-phase grid connected inverter and the power flow control strategies from the PMSG to the grid. It is worth noticing that the two full-bridge power converters are controlled by two different DSP which can exchange information only through the value of the DC Link voltage. Experimental results confirm the effectiveness of the adopted solutions.
Keywords :
AC-DC power convertors; DC-AC power convertors; DC-DC power convertors; load flow control; machine vector control; maximum power point trackers; permanent magnet generators; power grids; rectifying circuits; synchronous generators; wind power plants; wind turbines; AC-DC passive rectifier; DC link voltage; DC-AC converter; DC-AC full-bridge inverter; DC-DC boost converter; DSP; MPPT algorithm; PMSG; back-to-back inverter topology; back-to-back power converter; cost reduction; d-q vector control; digital signal processors; energy productivity; full-bridge power converters; maximum power point tracker algorithm; microwind turbine systems; optimal system control; permanent magnet synchronous generator; power flow control strategy; power switches; single-phase grid connected inverter; wind grid-connected converter; Generators; Observers; Phase locked loops; Rotors; Torque; Voltage control; Wind turbines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conference and Exhibition (ENERGYCON), 2012 IEEE International
Conference_Location :
Florence
Print_ISBN :
978-1-4673-1453-4
Type :
conf
DOI :
10.1109/EnergyCon.2012.6347750
Filename :
6347750
Link To Document :
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