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首页> 外文期刊>Magnetics, IEEE Transactions on >Spatial Filtering: A Tool for Selective Harmonics Elimination in the Design of Permanent-Magnet Synchronous Motors
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Spatial Filtering: A Tool for Selective Harmonics Elimination in the Design of Permanent-Magnet Synchronous Motors

机译:空间滤波:永磁同步电动机设计中的一种选择谐波消除工具

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摘要

A method to model the performance of permanent-magnet synchronous motors (PMSMs) as a set of chained blocks capable of filtering in both spatial and frequential domains is introduced in this paper. The proposed tool is based on the convolution integral, which naturally connects both spatial and frequential domains in a formal way and relates the geometry of the motor directly with its frequency response. With this new instrument, the designer can easily and precisely appraise the resulting effect of any of the blocks which affect the performance of the motor. Furthermore, conversely, the designer can also synthesize the suitable modification of a block to obtain the desired performance of a motor. The analysis of the PMSM shown here is focused on, but not limited to, the generation of induced electromotive force (EMF) and of cogging torque, as the main causes of torque vibration. An experimental validation of the method has been performed showing good agreement between theoretical predictions, simulations, and experimental results. As a first practical result, this paper presents a motor design based on the analytical synthesis of a spatial filter that enables the selective elimination of EMF harmonics through geometrical arrangement of the magnets.
机译:本文介绍了一种将永磁同步电动机(PMSM)的性能建模为一组能够在空间和频繁域中进行过滤的链块的方法。所提出的工具基于卷积积分,该卷积积分以形式化方式自然地连接了空间域和频率域,并将电动机的几何形状直接与其频率响应相关联。使用这种新仪器,设计人员可以轻松,准确地评估影响电机性能的任何模块的结果。此外,相反地,设计者还可以合成块的适当修改,以获得所需的电动机性能。此处显示的PMSM分析着重于但不限于感应电动势(EMF)和齿槽转矩的产生,这是转矩振动的主要原因。已经对该方法进行了实验验证,表明理论预测,模拟和实验结果之间具有良好的一致性。作为第一个实际结果,本文提出了一种基于空间滤波器的分析综合的电动机设计,该电动机能够通过磁体的几何排列来选择性消除EMF谐波。

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