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首页> 外文期刊>Energy Conversion, IEEE Transactions on >Reducing Harmonic Eddy-Current Losses in the Stator Teeth of Interior Permanent Magnet Synchronous Machines During Flux Weakening
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Reducing Harmonic Eddy-Current Losses in the Stator Teeth of Interior Permanent Magnet Synchronous Machines During Flux Weakening

机译:减少弱磁期间内部永磁同步电机定子齿中的谐波涡流损耗

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摘要

Interior permanent magnet (IPM) synchronous machines can experience large harmonic eddy-current losses in the stator teeth under flux-weakening operation, significantly depressing the efficiency of these machines at high operating speeds. This paper presents a new analytical/finite-element hybrid design approach to reduce the harmonic eddy-current losses in IPM machine stator teeth during flux-weakening operation. The proposed technique achieves this objective by three steps: 1) developing an analytical index for the harmonic eddy-current losses in IPM machine stator teeth; 2) designing the spatial distribution of the rotor MMF to minimize the analytical index; and 3) synthesizing the rotor geometry to implement the desired rotor MMF function while maintaining the basic machine characteristics unchanged. It will be shown that two-layer rotors, if properly optimized, are significantly more effective than one-layer rotors for the purpose of reducing the harmonic eddy-current losses in IPM machine stator teeth during flux-weakening operation at high speeds.
机译:内部永磁体(IPM)同步电机在弱磁通操作下会在定子齿中遭受较大的谐波涡流损耗,这在很大程度上降低了这些电机在高运行速度下的效率。本文提出了一种新的分析/有限元混合设计方法,以减少弱磁操作中IPM电机定子齿中的谐波涡流损耗。所提出的技术通过三个步骤实现了这一目标:1)建立IPM电机定子齿中谐波涡流损耗的分析指标; 2)设计转子MMF的空间分布,以最小化分析指标; 3)综合转子几何形状以实现所需的转子MMF功能,同时保持基本的机器特性不变。将显示,如果适当优化,两层转子比一层转子要有效得多,目的是减少高速磁通弱化操作期间IPM电机定子齿中的谐波涡流损耗。

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