DocumentCode :
2363884
Title :
Maximum-Power-Extraction Algorithm for Grid-Connected PMSG Wind Generation System
Author :
Duan, Rou-Yong ; Lin, Chung-You ; Wai, Rong-Jong
Author_Institution :
Dept. of Ind. Safety & Health, Hung Kuang Univ., Taichung
fYear :
2006
fDate :
6-10 Nov. 2006
Firstpage :
4248
Lastpage :
4253
Abstract :
This study proposed a maximum-power-extraction algorithm (MPEA) including a maximum-power error driven (MPED) mechanism and a maximum-power differential speed (MPDS) control for a grid-connected wind generation system with a permanent-magnet synchronous generator (PMSG). The MPED mechanism works as the maximum-power-point-tracking (MPPT) method in the photovoltaic system gradually increasing to its maximum value by regulating the direction of grid-connected current command according to the power variation trend. Moreover, the MPDS control produces an additional step of current command based on the instantaneous difference of generator speeds so that it can prevent the wind turbine from stalling at the suddenly dropping wind speed and achieve the object of maximum power extraction instantly as a stiff wind flowing through the wind turbine. In addition, the output is connected to a utility grid for providing energy flexibility via a unipolar full-bridge inverter controlled by a digital-signal-processor. The grid-connected experimentations of the proposed MPEA scheme without any mechanical sensors for a wind-power emulation system via a PMSG driven by an induction motor are given to examine its feasibility in practice
Keywords :
angular velocity control; bridge circuits; induction motor drives; invertors; permanent magnet generators; photovoltaic power systems; power grids; power system interconnection; synchronous generators; wind turbines; digital-signal-processor; grid-connected PMSG wind generation system; grid-connected current command; induction motor drives; maximum power extraction; maximum-power differential speed control; maximum-power error driven mechanism; maximum-power-extraction algorithm; maximum-power-point-tracking method; mechanical sensors; permanent-magnet synchronous generator; photovoltaic system; unipolar full-bridge inverter control; wind turbine; wind-power emulation system; Control systems; Error correction; Mesh generation; Photovoltaic systems; Power generation; Synchronous generators; Wind energy generation; Wind power generation; Wind speed; Wind turbines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IEEE Industrial Electronics, IECON 2006 - 32nd Annual Conference on
Conference_Location :
Paris
ISSN :
1553-572X
Print_ISBN :
1-4244-0390-1
Type :
conf
DOI :
10.1109/IECON.2006.347510
Filename :
4153000
Link To Document :
بازگشت