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首页> 外文期刊>Electric Power Applications, IET >Investigation of scaling effect on power factor of permanent magnet Vernier machines for wind power application
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Investigation of scaling effect on power factor of permanent magnet Vernier machines for wind power application

机译:风电应用永磁游标电机功率因数调查研究

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摘要

This study investigates the scaling effect on power factor of surface mounted permanent magnet Vernier (SPM-V) machines with power ratings ranging from 3 kW, 500 kW, 3 MW to 10 MW. For each power rating, different slot/pole number combinations have been considered to study the influence of key parameters including inter-pole magnet leakage and stator slot leakage on power factor. A detailed analytical modelling, incorporating these key parameters, is presented and validated with two-dimensional finite-element analysis for different power ratings and slot/pole number combinations. The study has revealed that with scaling (increasing power level), significant increase in electrical loading combined with the increased leakage fluxes, i.e. (i) magnet leakage flux due to large coil pitch to rotor pole pitch ratio, (ii) magnet inter-pole leakage flux and (iii) stator slot leakage flux, reduces the ratio of armature flux linkage to permanent magnet flux linkage and thereby has a detrimental effect on the power factor. Therefore, unlike conventional SPM machines, the power factor of SPM-V machines is found to be significantly reduced at high power ratings.
机译:本研究调查了电力额定功率范围为3 kW,500 kW,3 MW至10 MW的电力额定电力额定电力磁控器(SPM-V)机器电源系数的缩放效果。对于每个额定功率,已经考虑了不同的槽/极数组合研究了关键参数的影响,包括极电磁体泄漏和用于功率因数的定子槽泄漏。提供并验证了包含这些关键参数的详细分析建模,并针对不同的电力额定值和槽/极数组合具有二维有限元分析。该研究表明,通过缩放(力量增加),电荷的显着增加与增加的泄漏通量增加,即(i)磁体泄漏通量由于大线圈间距与转子极桨距比,(ii)磁体相互作用泄漏通量和(iii)定子槽漏通量降低了电枢磁通连杆与永磁磁通连杆的比率,从而对功率因数有不利影响。因此,与传统的SPM机器不同,发现SPM-V机器的功率因数在高功率额定值下显着降低。

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