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3-D Analytical Model of Helical Winding PM Machines Including Rotor Eddy Currents

机译:包含转子涡流的螺旋绕组永磁电机的3D分析模型

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Helical windings (or zigzag windings) are used in a number of applications, however, in electrical machines, mainly employed in low-power, high-speed permanent magnet (PM) brushless dc machines due to the cost effectiveness of the winding type while maintaining reasonable performance. Typically, helical windings are used for low-voltage applications due to their spiral form, which makes them most suitable for a small number of turns. In high-speed electrical machines, such a low number of turns are applicable. It is apparent that high-speed PM machines suffer from rotor eddy-current losses, which in some cases may lead to PM demagnetization due to overheating. The performance of the machine is compromised by these losses; hence, they have to be considered during the design procedure. There are many papers analyzing the magnetic field of these machines employing helical windings; however, none of them present a simple and precise electromagnetic model of a machine with the helical winding. This paper presents an analytical approach to model the resulting 3-D magnetic field of the helical winding, considering eddy currents in the conducting media of the rotor. The model is verified with the 3-D finite-element method by means of comparing magnetic field and rotor eddy-current losses.
机译:螺旋绕组(或之字形绕组)在许多应用中使用,但是在电机中,由于保持绕组类型的成本效益,主要用于低功率,高速永磁(PM)无刷直流电机中合理的表现。通常,螺旋绕组由于其螺旋形式而用于低压应用,这使其最适合于少量匝数。在高速电机中,匝数很少。显然,高速永磁电机遭受转子涡流损耗的影响,在某些情况下,转子涡流损耗可能会因过热而导致永磁体退磁。这些损失会损害机器的性能;因此,在设计过程中必须考虑它们。有许多论文分析了这些采用螺旋绕组的电机的磁场。但是,它们都没有提出带有螺旋绕组的电机的简单而精确的电磁模型。本文提出了一种分析方法,可以考虑转子的导电介质中的涡流,对螺旋绕组的3D磁场进行建模。通过比较磁场和转子涡流损耗,用3-D有限元方法对该模型进行了验证。

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