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Comparison of 10 MW superconducting generator topologies for direct-drive wind turbines

机译:直驱式风力发电机10 MW超导发电机拓扑的比较

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Large wind turbines of 10 MW or higher power levels are desirable for reducing the cost of energy of offshore wind power conversion. Conventional wind generator systems will be costly if scaled up to 10 MW due to rather large size and weight. Direct drive superconducting generators have been proposed to address the problem with generator size, because the electrical machines with superconducting windings are capable of achieving a higher torque density of an electrical machine. However, the topology to be adopted for superconducting wind generators has not yet been settled, since the high magnetic field excitation allows for lightweight non-magnetic composite materials for machine cores instead of iron. A topology would probably not be a good option for an offshore wind turbine generator if it demands a far more expensive active material cost than others, even if it has other advantages such as light weight or small iron losses. This paper is to provide a preliminary quantitative comparison of 10 MW superconducting MgB2 generator topologies from the perspective of active material. The results show that iron-cored topologies have a cheaper active material and their sizes are relatively smaller than the others.
机译:需要10MW或更高功率水平的大型风力涡轮机,以减少海上风力发电的能源成本。如果由于规模和重量较大而扩大到10 MW,传统的风力发电机系统将很昂贵。已经提出了直接驱动超导发电机来解决发电机尺寸的问题,因为具有超导绕组的电机能够实现电机的更高的转矩密度。但是,由于高磁场激励允许使用轻质非磁性复合材料代替铁,因此尚未确定超导风力发电机采用的拓扑。如果拓扑结构要求的活性材料成本比其他拓扑结构昂贵得多,那么拓扑结构对于海上风力涡轮发电机可能不是一个好的选择,即使它具有其他优点(例如重量轻或铁损小)也是如此。本文将从活性材料的角度提供10 MW超导MgB2发生器拓扑的初步定量比较。结果表明,铁芯拓扑结构具有更便宜的活性材料,并且其尺寸相对较小。

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