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首页> 外文期刊>International review of electrical engineering >Optimal Design of a Surface Mounted Permanent-Magnet BLDC Motor for Spacecraft Applications
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Optimal Design of a Surface Mounted Permanent-Magnet BLDC Motor for Spacecraft Applications

机译:用于航天器应用的表面安装永磁BLDC电机的优化设计

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This paper presents the optimal design of a surface mounted permanent-magnet (PM) Brushless direct-current (BLDC) motor meant for spacecraft applications. The spacecraft applications requires the choice of a motor with high torque density, minimum cogging torque, better positional stability and high torque to inertia ratio. Performance of two types of machine configurations designed viz Slotted PMBLDC and Slotless PMBLDC with Halbach array and radial magnetization are compared with the help of analytical and finite-element (FE) methods. It is found that unlike a Slotted PMBLDC motor, the Slotless type with Halbach array develops zero cogging torque without reduction in the developed torque, suiting spacecraft applications. Moreover, the machine being coreless provides high torque to inertia ratio and zero magnetic stiction confirming to the requirements of spacecraft applications.
机译:本文介绍了适用于航天器应用的表面安装式永磁(PM)无刷直流(BLDC)电动机的最佳设计。航天器的应用需要选择具有高转矩密度,最小齿槽转矩,更好的位置稳定性和高转矩惯性比的电动机。在分析和有限元(FE)方法的帮助下,比较了带有Halbach阵列的开槽PMBLDC和无槽PMBLDC以及径向磁化设计的两种机器配置的性能。发现与开槽PMBLDC电动机不同,带有哈尔巴赫阵列的无槽型电动机在不降低转矩的情况下可产生零齿槽转矩,从而适合航天器应用。此外,该机器为无芯机器,可提供高转矩惯性比和零磁滞,从而证实了航天器应用的需求。

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