首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Optimal range of loading for operating a fixed-speed wind turbine using a self-excited induction generator
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Optimal range of loading for operating a fixed-speed wind turbine using a self-excited induction generator

机译:使用自激感应发电机运行定速风力涡轮机的最佳负载范围

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In the present study, a new strategy of analysis was used to determine the optimal interval of a single-phase resistive load to operate a fixed-speed wind turbine. The essence of this optimal range is to enable the generator to have stable voltages and current balances, large power, and an acceptable frequency range, and also mitigate generator overheating. The generator windings and excitation capacitances were prepared according to the C-2C connection scheme with suitable values of excitation capacitances. The admittance matrix of the system was based on positive and negative sequence generator voltages and was calculated by symmetrical components theory. The generator performance was found through optimization of the determinant admittance matrix magnitude. Moreover, balanced position of the generator can be achieved near the maximum load power. Consequently, the best interval of resistive load of the generator (1.5 kW) was found around 2 % voltage unbalance factor. The appropriate optimal load was $pm$ 6 % of the perfect balance resistive load value.
机译:在本研究中,使用一种新的分析策略来确定运行定速风力涡轮机的单相电阻性负载的最佳间隔。此最佳范围的本质是使发电机具有稳定的电压和电流平衡,大功率和可接受的频率范围,并且还可以减轻发电机过热。发电机绕组和励磁电容是根据C-2C连接方案准备的,具有合适的励磁电容值。系统的导纳矩阵基于正负序发生器电压,并根据对称分量理论计算得出。通过优化行列式导纳矩阵幅度可以发现发生器性能。而且,可以在最大负载功率附近实现发电机的平衡位置。因此,发现发电机的最佳电阻负载间隔(1.5 kW)约为2%的电压不平衡因数。合适的最佳负载为完美平衡电阻负载值的6%。

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