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Model-based optimal efficiency control of induction generators for wind power systems

机译:基于模型的风力发电感应发电机最优效率控制

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In this paper, a novel control algorithm for optimal operating efficiency of induction generators for wind power generation is presented. The proposed method is based on the flux level reduction, where the flux level is computed from the machine model for the optimum d-axis current of the generator. For the vector-controlled induction generator, the d-axis current controls the excitation level in order to minimize the generator loss while the q-axis current controls the generator torque, by which the speed of the induction generator is controlled according to the variation of the wind speed in order to produce the maximum output power. An experimental setup has been implemented in laboratory to validate the theoretical development. The experimental results show that the loss minimization process is more effective at low wind speed and that the percent of power saving can approach to 25%. Experimental results are shown to verify the validity of the proposed scheme.
机译:本文提出了一种新的控制算法,用于优化风力发电机的感应发电机的运行效率。所提出的方法是基于磁通量降低的,其中通量水平是根据机器模型为发电机的最佳d轴电流计算的。对于矢量控制的感应发电机,d轴电流控制励磁水平,以最大程度地减少发电机损耗,而q轴电流控制发电机转矩,通过感应转矩的变化来控制感应发电机的速度。风速以产生最大的输出功率。实验设置已经在实验室中实施以验证理论发展。实验结果表明,在低风速下损耗最小化过程更为有效,节电百分比可达到25%。实验结果证明了所提方案的有效性。

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