4.4 Article

Affine projection algorithm based adaptive control scheme for operation of variable-speed wind generator

期刊

IET GENERATION TRANSMISSION & DISTRIBUTION
卷 9, 期 16, 页码 2611-2616

出版社

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/iet-gtd.2014.1146

关键词

wind power plants; wind turbines; permanent magnet generators; synchronous generators; machine vector control; power generation control; adaptive control; PI control; Taguchi methods; power grids; invertors; power engineering education; control engineering computing; angular velocity control; affine projection algorithm; adaptive vector control scheme; variable-speed wind turbine driven permanent magnet synchronous generator; grid-connected VSWT-PMSG; computational complexity; generator-side converter; grid-side inverter; APA-based adaptive proportional-integral controllers; Hokkaido island; Japan; dynamic characteristics; optimised PI controllers; Taguchi method; PSCAD environment; EMTDC environment

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This study presents a novel adaptive control scheme for variable-speed wind turbine (VSWT) driven permanent magnet synchronous generator (PMSG) to ensure its operation under different operating conditions. The adaptive control scheme is based on the affine projection algorithm (APA) which provides a faster convergence and less computational complexity than the least-mean-square algorithm. The proposed adaptive controller is used to control both the generator-side converter and the grid-side inverter without giving additional tuning efforts. Each vector control scheme for the converter/inverter has four APA-based adaptive proportional-integral (PI) controllers. Detailed modelling and the control strategies of the system under study are demonstrated. Real wind speed data extracted from Hokkaido island, Japan is used in this study. The dynamic characteristics of a grid-connected VSWT-PMSG are investigated in details to ensure the proposed controller operation under different operating conditions. The effectiveness of the proposed adaptive controller is compared with that obtained using optimised PI controllers by Taguchi method. The validity of the adaptive vector control scheme is verified by the simulation results which are performed using PSCAD/EMTDC environment.

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