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A Compact Expression for Cogging Torque Considering Both Radial and Tangential Fields for Surface-Mounted PM Motors

机译:表面安装永磁电机同时考虑径向和切向场的齿槽转矩的紧凑表达式

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摘要

Cogging torque is due to the interaction between a magnet's magnetomotive force and a slotted stator or rotor structure. In this paper, a compact equation for cogging torque is presented for surface-mounted permanent magnet motors. This equation has four terms of field interactions involving tangential and radial components of airgap flux density. These four terms are considered as sources of cogging. Variations of these sources with pole embrace are examined. In earlier publications, closed-form expressions for pole embrace corresponding to the minimum cogging were presented considering only radial fields. In this paper, an attempt is made to recognize the influence of tangential fields in cogging. The compact form given here distinctly reflects the significance of both radial and tangential field components. Furthermore, to study the trends of cogging sources with pole number and airgap radius, simplified expressions for harmonic content of field components are derived using the first-order binomial approximation. The analysis on cogging presented in this paper helps in determining search domains in which optimum embrace for minimum cogging can be found when both the radial and tangential field components are considered.
机译:齿槽转矩是由于磁体的磁势与开槽的定子或转子结构之间的相互作用而引起的。在本文中,提出了用于表面安装永磁电动机的齿槽转矩的紧凑方程。该方程具有四个场相互作用项,涉及气隙通量密度的切向分量和径向分量。这四个术语被认为是齿槽效应的来源。研究了这些来源随极抱的变化。在较早的出版物中,仅考虑径向场,提出了对应于最小齿槽效应的极拥抱的封闭形式表达式。在本文中,试图识别切向场在齿槽效应中的影响。这里给出的紧凑形式清楚地反映了径向和切向场分量的重要性。此外,为了研究带有极数和气隙半径的齿槽效应的趋势,使用一阶二项式近似推导了场分量谐波含量的简化表达式。本文提出的齿槽效应分析有助于确定搜索范围,在考虑径向和切向场分量的情况下,可以找到最小齿槽效应的最佳包容。

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