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An approach to optimal design of double-sided coreless linear motor

机译:双面无芯线性电动机最优设计方法

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Double-sided coreless linear motors have a crucial role in direct-driven precise linear motion applications. In this study, an optimum design effort focused on thrust force production is presented. For an applicable brushless linear motor structure, winding and permanent magnet (PM) dimensions which are providing the highest possible force are defined by using finite element analysis (FEA). It is shown that the most important problem of an optimum design is arising from placing proper amount of ampere-turns, i.e. windings, without losing a substantial value of permanent magnet flux density due to increased air gap. For obtaining an optimal design, structural demagnetization, loading demagnetization and fringing flux must be taken into account. So a trade-off is provided between the winding structure and the PM assembly.
机译:双面无芯线性电机在直接驱动的精确线性运动应用中具有至关重要的作用。在这项研究中,提出了一种专注于推力生产的最佳设计努力。对于提供最佳力的适用的无刷线性电动机结构,绕组和永磁体(PM)尺寸通过使用有限元分析(FEA)来定义提供最高的力。结果表明,最佳设计的最重要的问题是从放置适当的安培转动时,即绕组,而不会因气隙增加而导致的永磁磁通密度的大量值。为了获得最佳设计,必须考虑结构退磁,加载退磁和流苏通量。因此,在绕组结构和PM组件之间提供权衡。

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