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A Novel Design Method of Permanent Magnet Synchronous Generator From Perspective of Permanent Magnet Material Saving

机译:从永磁材料节省的角度看一种新型的永磁同步发电机设计方法

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This paper puts forward a novel design method of permanent magnet synchronous generator (PMSG). The most significant advantage of this method is that the output power of PMSG can be prominently improved without increasing any material costs. The main difference from the traditional design scheme is that the volume of permanent magnet (PM) remains unchanged during the entire design procedure. And the maximum output power scheme is found out just by optimizing the PM's shapes with the change of mechanical pole-arc coefficient. In other words, this method aims to obtain the maximum PM utilization design scheme that can produce more “effective” magnet field so that it can generate the larger output power. The dimension parameters of PMs with different shapes are calculated by the equivalent analytic geometry method. To verify its availability, this novel method is performed on four common types of PMSGs with different rotor structures, and their satisfactory performance results are obtained. The comparison with the traditional machine design scheme is also presented to illustrate the innovation and priority. The finite-element analysis method based on Ansoft/Maxwell is applied for the electromagnetic models’ building and simulation.
机译:提出了一种永磁同步发电机(PMSG)的新颖设计方法。该方法的最大优势在于,在不增加任何材料成本的情况下,可以显着提高PMSG的输出功率。与传统设计方案的主要区别在于,在整个设计过程中,永磁体(PM)的体积保持不变。仅通过改变机械极弧系数来优化PM的形状,即可找到最大输出功率方案。换句话说,该方法旨在获得最大的PM利用设计方案,该方案可以产生更多的“有效”磁场,从而可以产生更大的输出功率。通过等效解析几何方法计算出不同形状的永磁体的尺寸参数。为了验证其可用性,对具有不同转子结构的四种常见类型的PMSG进行了这种新颖的方法,并获得了令人满意的性能结果。还提出了与传统机器设计方案的比较,以说明创新和优先级。将基于Ansoft / Maxwell的有限元分析方法应用于电磁模型的建立和仿真。

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