Cogging torque optimization of a novel transverse flux permanent magnet generator with double C-hoop stator for wind power application

Z. Jia, H. Lin
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引用次数: 1

Abstract

Transverse flux permanent magnet generator (TFPMG) is especially suitable for wind power application for the merits of large pole numbers, decoupled magnetic circuit, and high power density. The distinguishing feature of TFPMG is the magnetic flux existed in three-dimensional space and three-dimensional finite element method (3-D FEM) is employed to analyze its characteristics. Such as flux-switching TFPM generator [1], many TFPMGs with new topologies have been proposed. However, they commonly have a drawback that only half of PMs do work at the same time and the cogging torque vibrations are unacceptable and desiderated to be optimized. The proposed 12 pole-pairs TFPMG overcomes these shortcomings, which schematic structure is shown in Fig. 1 (a). The generator is constructed by the double C-hoop stator cores inserted into machined cavities in the stator holder, the doubled PMs screwed onto two rotor disks with opposite polarities to enable the flux-concentrated effect, and the armature winding bundling all stator hoops.
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风电用新型双c形环定子横向磁通永磁发电机齿槽转矩优化
横向磁通永磁发电机(TFPMG)具有极数大、磁路去耦、功率密度高等优点,特别适合风力发电应用。TFPMG的显著特点是其磁通量存在于三维空间中,并采用三维有限元法对其特性进行了分析。如磁通开关TFPM发电机[1],许多具有新拓扑结构的TFPM已被提出。然而,它们通常有一个缺点,即只有一半的pm同时工作,并且齿槽扭矩振动是不可接受的,需要进行优化。所提出的12极对TFPMG克服了这些缺点,其结构示意图如图1 (a)所示。发电机由双c -箍定子铁芯插入定子支架的加工腔中,双c -箍定子铁芯拧在两个极性相反的转子盘上以实现磁通集中效果,电枢绕组将所有定子铁芯捆在一起构成。
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