دانلود مقاله ISI انگلیسی شماره 56242
ترجمه فارسی عنوان مقاله

مطالعه ویژگی های قدرت یکپارچه ژنراتور القایی دو سو تغذیه و فرکانس آن در تولید برق بادی

عنوان انگلیسی
Integrated power characteristic study of DFIG and its frequency converter in wind power generation
کد مقاله سال انتشار تعداد صفحات مقاله انگلیسی
56242 2010 10 صفحه PDF
منبع

Publisher : Elsevier - Science Direct (الزویر - ساینس دایرکت)

Journal : Renewable Energy, Volume 35, Issue 1, January 2010, Pages 42–51

ترجمه کلمات کلیدی
قدرت باد؛ ژنراتور القایی دوسو تغذیه ؛ مبدل PWM؛ کنترل برداری DQ - مدل سازی؛ شبیه سازی
کلمات کلیدی انگلیسی
Wind power; Doubly fed inductor generator; PWM converter; d–q vector control; Modeling; Simulation
پیش نمایش مقاله
پیش نمایش مقاله  مطالعه ویژگی های قدرت یکپارچه ژنراتور القایی دو سو تغذیه و فرکانس آن در تولید برق بادی

چکیده انگلیسی

A doubly fed induction generator (DFIG) is a variable speed induction machine. It is a standard, wound rotor induction machine with its stator windings directly connected to the grid and its rotor windings connected to the grid through a back-to-back AC/DC/AC PWM converter. The power generation of a DFIG includes power delivered from two paths, one from the stator to the grid and the other from the rotor, through the frequency converter, to the grid. The power production characteristics, therefore, depend not only on the induction machine but also on the two PWM converters as well as how they are controlled. This paper investigates power generation characteristics of a DFIG system through computer simulation. The specific features of the study are (1) a steady-state model of a DFIG system in d–q reference frame, (2) a simulation mechanism that reflects decoupled d–q control strategies, (3) power characteristic simulation for both generator and converter, and (4) an integrative study combining stator, rotor and converter together. An extensive analysis is conducted to examine integrated power generation characteristics of DFIG and its frequency converter under different wind and d–q control conditions so as to benefit the development of advanced DFIG control technology.