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Multiobjective Design Optimization of a Double-Sided Flux Switching Permanent Magnet Generator for Counter-Rotating Wind Turbine Applications

机译:双面磁通开关永磁发电机的多目标设计优化,用于反向旋转风力涡轮机应用

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摘要

A counter-rotating wind turbine in which two sets of rotors rotating in opposite directions leads to the twice power density of the conventional turbines. Moreover, employing a high-power modern electric generator is another contributing factor in improving the performance of wind power generation systems. In this regard, double-sided flux switching permanent magnet generators, with ferrite magnet, are getting firm attention. In this regard, the concept and multiobjective design optimization procedure of this generator, connected with counter-rotating wind turbines, is proposed in this article. In order to achieve the optimum performance of the proposed generator, the design of experiments with Taguchi optimization is employed. In this method, although the effect of each design variable on the objective functions can be considered, selecting the best combination of control factors is not easy in the multiobjective optimization. Thus, a decision-making algorithm with the technique for order of preference by similarity to ideal solution is employed in order to select the best combination. Finally, the performance of the optimized counter-rotating double-sided flux switching permanent magnet generator will be evaluated by finite element modeling and experimental tests.
机译:一个反向旋转风力涡轮机,其中两组转子沿相反方向旋转导致传统涡轮机的两倍电力密度。此外,采用高功率现代发电机是提高风力发电系统性能的另一个贡献因素。在这方面,带有铁氧体磁铁的双面磁通开关永磁发电机牢固地注意。在这方面,在本文中提出了与反向旋转风力涡轮机连接的该发电机的概念和多目标设计优化过程。为了实现所提出的发电机的最佳性能,采用了用Taguchi优化进行实验的设计。在这种方法中,尽管可以考虑每个设计变量对目标函数的影响,但在多目标优化中选择最佳控制因子的最佳组合并不容易。因此,采用与通过相似性与理想解决方案相似的优先顺序的技术的决策算法,以便选择最佳组合。最后,通过有限元建模和实验测试评估优化的反向旋转双面通量开关永磁发生器的性能。

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