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Optimal selection of excitation capacitor for 6/3-phase dual stator-winding induction generator with the static excitation controller applied in wind power

机译:风电应用静态励磁控制器优化6/3相双定子绕组感应发电机励磁电容器的选择

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In this paper, an optimal scheme of excitation capacitor for 6/3-phase dual stator-winding induction generator (DWIG) system applied in wind power is presented. Through the analysis of the excitation reactive power released by the excitation capacitor and the static excitation controller (SEC), the optimal selection of excitation capacitor not only is related to generator parameters, speed range, and load, but also affected by wind turbine power curve. In order to minimize the capacity of SEC, an appropriate excitation capacitor is determined by calculation and simulation. On the basis of this, the experimental works from the prototype of 18 kW 6/3-phase DWIG wind power system are carried out to verify the optimal scheme, and the results prove the correctness and effectiveness of this optimization scheme.
机译:本文提出了一种应用于风力发电的6/3相双定子绕组感应发电机(DWIG)系统的励磁电容器的优化方案。通过对励磁电容器和静态励磁控制器(SEC)释放的励磁无功功率的分析,励磁电容器的最佳选择不仅与发电机参数,转速范围和负载有关,而且还受风力发电机功率曲线的影响。 。为了最小化SEC的容量,通过计算和仿真确定合适的励磁电容器。在此基础上,以18 kW 6/3相DWIG风力发电系统为原型,进行了实验研究,验证了该优化方案,结果证明了该优化方案的正确性和有效性。

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