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首页> 外文期刊>Electric Power Applications, IET >Modular airgap windings for linear permanent magnet machines
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Modular airgap windings for linear permanent magnet machines

机译:线性永磁电机的模块化气隙绕组

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摘要

This study proposes an offset concentrated wound air-core linear synchronous machine for launch applications where reduced supply volt-amp per newton (VA/N) and attraction force is essential. A winding factor model based on the conductor distribution is derived and used to analyse the winding factor of possible topologies. Two configurations, 3-coil/4-pole and 12-coil/14-pole, have high fundamental winding factors and are selected for the design comparisons. Machines using single- and double-sided offset windings are compared. The results obtained for these selected designs show that the 3-coil/4-pole design with offset winding provides the highest thrust due to its higher winding factor, but the 12-coil/14-pole design has lower supply VA/N. The implementation of the offset windings reduces VA/N. A significant reduction can be seen when the long stator short rotor arrangement is considered. A half-segment prototype is built and tested. The experimental results obtained validate both the algebraic and three-dimensional finite element analysis.
机译:这项研究提出了一种用于发射应用的偏置集中式缠绕空心线性同步电机,其中必须降低每牛顿的电源伏安(VA / N)和吸引力。导出基于导体分布的绕组系数模型,并将其用于分析可能拓扑的绕组系数。 3线圈/ 4极和12线圈14极两种配置具有较高的基本绕组系数,因此选择它们进行设计比较。比较了使用单面和双面偏置绕组的电机。这些选定设计的结果表明,具有偏置绕组的3线圈/ 4极设计由于其较高的绕组系数而提供了最大推力,但12线圈/ 14极设计的电源VA / N较低。偏置绕组的实现降低了VA / N。当考虑长定子短转子布置时,可以看到明显减少。半段原型已构建并经过测试。获得的实验结果验证了代数和三维有限元分析。

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