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Optimization and comparison of flux-concentrating Nd-Fe-B generator considering variable power factor and wind conditions for a 6MW offshore wind turbine

机译:用于6MW海上风力涡轮机的可变功率因数和风能的磁通集中ND-FE-B发生器的优化与比较

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A large proportion of offshore wind turbine designs are now based on directly driven permanent magnet synchronous generators using rare earth materials. During last few years, the price of Nd-Fe-B has increased and fluctuated significantly. The large price fluctuations encourage us to look at flux-concentrating Nd-Fe-B generator (where flux-concentrating characteristics helps to increase flux density in the air gap) and optimize that for offshore wind turbine generator. In this paper, a 6 MW generator using Nd-Fe-B magnet is designed analytically in MATLAB, where magnets are placed between magnetically conducting pole shoes to reinforce the air gap flux. The generator design is optimized for the best performance machine and lowest cost of energy. Further optimization is performed to compare the results with a 6 MW surface-mounted Nd-Fe-B generator. It is found that, the flux-concentrating Nd-Fe-B generator gives better cost of energy compare to surface mounted Nd-Fe-B generator. The effect of variable power factor and sensitivity to wind conditions are also estimated in this study.
机译:大量的海上风力涡轮机设计现在基于使用稀土材料直接驱动的永磁同步发电机。在过去几年中,ND-FE-B的价格有显着增加和波动。大型价格波动鼓励我们查看助熔剂ND-FE-B发生器(通量浓缩特性有助于增加气隙中的通量密度),并优化用于海上风力涡轮机发生器的通量。在本文中,使用ND-Fe-B磁体的6MW发生器在Matlab中设计设计,其中磁体放置在磁导杆鞋之间以加强气隙通量。发电机设计优化了最佳性能机器和最低能量成本。进行进一步优化以将结果与6 MW表面安装的ND-FE-B发生器进行比较。结果发现,磁通集中ND-Fe-B发生器为表面安装的ND-Fe-B发生器提供了更好的能量成本。在本研究中还估计了可变功率因数和对风条件的敏感性的影响。

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