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Auteur Shen Baike |
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Rotor position phase-locked loop for decoupled P\hbox {-}Q control of DFIG for wind power generation / Mwinyiwiwa Bakari in IEEE transactions on energy conversion, Vol. 24 N° 3 (Septembre 2009)
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Titre : Rotor position phase-locked loop for decoupled P\hbox {-}Q control of DFIG for wind power generation Type de document : texte imprimé Auteurs : Mwinyiwiwa Bakari, Auteur ; Yongzheng Zhang, Auteur ; Shen Baike, Auteur Année de publication : 2010 Article en page(s) : pp. 758 - 765 Note générale : Energy Conversion Langues : Anglais (eng) Mots-clés : Asynchronous generators--Phase locked loops--Power control--Rotors--Wind power--Wind turbines Résumé : Implementation of decoupled P-Q control of doubly fed induction generators requires the positions of the rotors to be known. The rotor position phase-lock loop (PLL) is an invention that extracts rotor position and speed simultaneously by ¿sensorless¿ means. The rotor position PLL is parameter-insensitive because, apart from an approximate value of the magnetization reactance, knowledge of the other parameters is not required for it to function. Experimental results obtained under noisy conditions demonstrate that it is also insensitive to noise. Note de contenu : Bibiogr. En ligne : http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=5224010&sortType%3Das [...]
in IEEE transactions on energy conversion > Vol. 24 N° 3 (Septembre 2009) . - pp. 758 - 765[article] Rotor position phase-locked loop for decoupled P\hbox {-}Q control of DFIG for wind power generation [texte imprimé] / Mwinyiwiwa Bakari, Auteur ; Yongzheng Zhang, Auteur ; Shen Baike, Auteur . - 2010 . - pp. 758 - 765.
Energy Conversion
Langues : Anglais (eng)
in IEEE transactions on energy conversion > Vol. 24 N° 3 (Septembre 2009) . - pp. 758 - 765
Mots-clés : Asynchronous generators--Phase locked loops--Power control--Rotors--Wind power--Wind turbines Résumé : Implementation of decoupled P-Q control of doubly fed induction generators requires the positions of the rotors to be known. The rotor position phase-lock loop (PLL) is an invention that extracts rotor position and speed simultaneously by ¿sensorless¿ means. The rotor position PLL is parameter-insensitive because, apart from an approximate value of the magnetization reactance, knowledge of the other parameters is not required for it to function. Experimental results obtained under noisy conditions demonstrate that it is also insensitive to noise. Note de contenu : Bibiogr. En ligne : http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=5224010&sortType%3Das [...] Exemplaires
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