10MW, 10rpm, 30Hz辐条铁氧体和粘结钕铁硼转子风力pmmsg初步设计,并对6种转子进行了有限元验证

L. Tutelea, I. Torac, A. Isfanuti, A. Popa, I. Boldea
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引用次数: 0

摘要

为了在功率因数大于0.7的情况下将效率提高到接近0.97,在最大70吨(25万美元)的有效重量(和成本)下,为10mw, 10rpm的风力发电机,分别设计了铁氧体辐条pm和结合钕铁硼,多极转子,三相径向气隙同步发电机,并对纯Iq场定向控制(FOC)的磁通密度分布和转矩波形以及Ldm, Lqm电感进行了关键的FEM验证检查。转子在q轴设置磁通屏障,进一步减小q轴电感,从而提高功率因数。已经考虑了转子核心几何形状的两种变体:一种是单层压(没有和额外的径向磁铁),一种是带磁屏障的可拆卸极;总共有6种转子变型。同时也证明了发电机能在近似情况下存活。2.00 p.u.负载,无严重的PM退磁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
10MW, 10rpm, 30Hz spoke Ferrite and bonded NdFeB-rotor wind PMSG preliminary design with FEM validations for 6 rotor variants
In an effort to increase the efficiency close to 0.97 for a power factor above 0.7, at maximum 70 tons (250,000USD) active weight (and cost) for 10 MW, 10rpm wind generator, a Ferrite spoke-PM and bonded NdFeB respectively, multi pole rotor, 3 phase radial air gap synchronous generator was designed here, with key FEM validation checks regarding the flux density distribution and torque waveform and Ldm, Lqm inductances for pure Iq field-oriented control (FOC). The rotor was provided with flux barriers in axis q, to further reduce q axis inductance and thus increase power factor. Two variants of rotor core geometry have been considered: one with a single lamination (without and with additional radial magnets) and one with detachable poles with flux barriers; in all, 6 rotor variants. It has been also proved that the generator can survive approx. 2.00 p.u. load without serious PM demagnetization.
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