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Force formulation of a three-phase tubular linear machine with dual Halbach array

机译:具有双Halbach阵列的三相管状直线电机的力公式

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A novel dual Halbach array is proposed in this paper to increase the output performance of tubular linear machines. The magnetic field distribution in three-dimensional (3D) space is formulated with Bessel functions analytically. Following that, the modeling of force output for linear machines with three-phase windings is carried out based on Lorentz force law. The formula component of force ripple is separated from the analytical expression of total force. It is found that for multi-phase tubular linear machines, the force output and force ripple are not only closely related to the instantaneous position of the mover, but also the starting position. Therefore, the force output of the linear machine is formulated for three typical starting positions as a function of mover positions. The derived models are simulated with respect to the mover's motion. They are also validated with numerical results from finite element calculation. The study shows that an appropriate starting position of the mover helps to improve the output performance of the tubular linear machines. The proposed analytical force model can also be employed to analyze the influence of the structure parameters on the force output of linear machines with similar structures.
机译:本文提出了一种新型的双哈尔巴赫阵列,以提高管状线性电机的输出性能。三维(3D)空间中的磁场分布通过贝塞尔函数解析地表示。然后,基于洛伦兹力定律对带有三相绕组的线性电机的力输出进行建模。力波动的公式部分与总力的解析表达式分开。发现对于多相管状线性电机,力输出和力波动不仅与动子的瞬时位置密切相关,而且与起始位置密切相关。因此,线性机械的力输出针对三个典型的起始位置制定为动子位置的函数。相对于动子的运动对导出的模型进行仿真。它们也得到了有限元计算的数值结果的验证。研究表明,动子的适当起始位置有助于改善管状直线电机的输出性能。所提出的分析力模型也可以用来分析结构参数对具有相似结构的线性机器的力输出的影响。

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