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首页> 外文期刊>Magnetics, IEEE Transactions on >Demagnetization Performance of a 7 MW Interior Permanent Magnet Wind Generator With Fractional-Slot Concentrated Windings
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Demagnetization Performance of a 7 MW Interior Permanent Magnet Wind Generator With Fractional-Slot Concentrated Windings

机译:带分数槽集中绕组的7 MW内部永磁风力发电机的去磁性能

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摘要

High reliability is one of the most important requirements for large-scale permanent magnet (PM) wind generators. However, the magnet suffers partially irreversible demagnetization due to the material property, especially under short-circuit conditions. To improve fault-tolerance capability and torque density, fractional-slot concentrated windings (FSCWs) have been adopted in wind generators. However, the rich harmonics of magnetomotive forces make the demagnetization characteristics different from that of generators with distributed windings. In this paper, the partial demagnetization performance of a 7 MW interior PM wind generator with FSCWs is investigated, under the symmetric short-circuit condition. In addition, influences of slot–pole combinations and rotor types are analyzed to improve the antidemagnetization capability. The transient magnetic behavior is evaluated by the finite-element analysis.
机译:高可靠性是大型永磁(PM)风力发电机的最重要要求之一。然而,由于材料特性,磁体遭受部分不可逆的退磁,特别是在短路条件下。为了提高容错能力和转矩密度,风力发电机中采用了小槽集中绕组(FSCW)。但是,磁通势的高次谐波使退磁特性不同于具有分布绕组的发电机的退磁特性。本文研究了在对称短路条件下,一台7 MW FSCW内置式永磁风力发电机的部分退磁性能。另外,分析了槽极组合和转子类型的影响,以提高抗退磁能力。瞬态磁行为通过有限元分析进行评估。

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