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Inductances and phase coupling analysis of tubular permanent magnet machines with transverse flux configuration

机译:具有横向磁通配置管式永磁机的电感和相位耦合分析

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This paper performs the inductance and phase coupling analysis of a tubular permanent magnet machine with transverse flux configuration for electromagnetic launch (EML) applications. Self- and mutual- inductances are calculated by employing a frozen permeability FE technique, and the results are validated by measurement on a prototype machine. The analysis of phase coupling problem is then undertaken, and it has been shown that the tubular transverse flux machine has the merit of magnetic decoupling between phases, and thus shows a brilliant prospect in EML applications. The influence of armature reaction on the inductance is also investigated, and it indicates that at higher current, the inductance fluctuates once instead of twice within one electrical cycle, which is quite different from that in conventional machines.
机译:本文对电磁发射(EML)应用具有横向通量配置的管状永磁机的电感和相位耦合分析。通过采用冷冻渗透性Fe技术来计算自我和互感,并通过原型机的测量来验证结果。然后进行了相位耦合问题的分析,已经表明,管状横向磁通机具有相位之间的磁性去耦的优点,因此在EML应用中显示出辉煌的前景。还研究了电枢反应对电感的影响,表明在更高的电流下,电感在一个电气循环中而不是两次,这与传统机器中的电流完全不同。

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