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Mohamed, Y., El-Sawy, A., Mossa, M. (2012). FIELD ORIENTATION CONTROL OF A WIND DRIVEN DFIG CONNECTED TO THE GRID. JES. Journal of Engineering Sciences, 40(No 1), 235-253. doi: 10.21608/jesaun.2012.112722
Yehia S. Mohamed; A. M. El-Sawy; Mahmoud A. Mossa. "FIELD ORIENTATION CONTROL OF A WIND DRIVEN DFIG CONNECTED TO THE GRID". JES. Journal of Engineering Sciences, 40, No 1, 2012, 235-253. doi: 10.21608/jesaun.2012.112722
Mohamed, Y., El-Sawy, A., Mossa, M. (2012). 'FIELD ORIENTATION CONTROL OF A WIND DRIVEN DFIG CONNECTED TO THE GRID', JES. Journal of Engineering Sciences, 40(No 1), pp. 235-253. doi: 10.21608/jesaun.2012.112722
Mohamed, Y., El-Sawy, A., Mossa, M. FIELD ORIENTATION CONTROL OF A WIND DRIVEN DFIG CONNECTED TO THE GRID. JES. Journal of Engineering Sciences, 2012; 40(No 1): 235-253. doi: 10.21608/jesaun.2012.112722

FIELD ORIENTATION CONTROL OF A WIND DRIVEN DFIG CONNECTED TO THE GRID

Article 14, Volume 40, No 1, January and February 2012, Page 235-253  XML PDF (450.38 K)
Document Type: Research Paper
DOI: 10.21608/jesaun.2012.112722
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Authors
Yehia S. Mohamed; A. M. El-Sawy; Mahmoud A. Mossa
Electrical Engineering Department, Faculty of Engineering, El-Minia University, EL-Minia, Egypt
Abstract
This paper aims to develop a method of field orientation scheme for controlling both active and reactive powers of a DFIG (double fed induction generator) driven by a wind turbine. The controlled system consists of a wind turbine that drives a DFIG connected to the utility grid through AC-DC-AC link. The control method is based on the theory of controlling the de and qe axes components of voltage and current for both rotor side and line side converters using PI controllers. The main control objective is to regulate the dc link voltage for operating at the maximum available wind power. A mathematical dynamic model of a DFIG driven by a wind turbine system is presented. Digital simulation has been carried out in order to evaluate the effectiveness of the proposed system. The results confirm that good steady state and dynamic performances of the proposed system has been achieved under different types of wind speed variations.
Keywords
Wind turbine; DFIG; reactive power control of induction machines; PI controller
Main Subjects
Electrical Engineering, Computer Engineering and Electrical power and machines engineering.
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