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《Automation of Electric Power Systems》 2004-13
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He Yikang, Zheng Kang, Pan Zaiping, Liu Qihui(Zhejiang University, Hangzhou 310027, China)  
With the continuous increase of the capacity of a wind-power generator, the efficiency improvement of electric power generation has become a more and more important issue. The variable-speed constant-frequency (VSCF) power generation, which aims to reach maximum wind-energy capturing and utilization for a variable blade-pitch wind-turbine, is currently pursued topic about wind-power generation techniques. In this paper, the technical approach of AC excited doubly-fed induction generator is comprehensively investigated thoroughly, including the discussion on issues such as (1) the VSCF principle of the doubly-fed generator, (2) the demands of the PWM frequency-converter, which is used as the excitation source for the generator, (3)the independent regulation of active and reactive power output from the generator side, which is designed for the purpose of tracing the maximum wind-energy capturing and realized by the stator field orientation control strategy, (4) the no-load cutting-in control of the generator being connected into the grid. The experimental operation study of no-load, cutting-in grid and power generation below and above the synchronous speed are all examined in a laboratory set-up, which successfully verifies the correctness of the A. C excited VSCF key-technique proposed in the paper and lays a technical foundation for the engineering development of the large modern wind-power generator.
【Fund】: 国家“十五”863计划资助项目(2001AA512023—3)
【CateGory Index】: TM614
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