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Analysis and modeling of mutually coupled linear switched reluctance machine with transverse flux for wave energy conversion

机译:具有互通量的互耦线性开关磁阻电机波能转换的分析与建模

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This paper presents a mutually coupled linear switched reluctance machine with transverse flux for direct-drive wave energy conversions. The operation principle with detailed theoretical derivation is analyzed to verify the higher force capacity of the proposed machine, just due to the mutually coupling characteristics improving the utilization of electric and magnetic circuits in energy conversion. A general nonlinear magnetic equivalent circuit model of the proposed machine that includes all possible flux paths in three-dimension (3D) view of the machine is also introduced, in which Maxwell stress tensor is adopted to simulate electromagnetic force in space. The accuracy of the model has been evaluated by comparison to the simulation result from 3D finite element analysis tool.
机译:本文提出了一种具有横向磁通量的相互耦合的线性开关磁阻电机,用于直接驱动波能量转换。通过详细的理论推导,分析了其工作原理,以证明所提出的机器具有更高的承受力,这仅仅是由于相互耦合的特性提高了电能转换中电磁电路的利用率。还介绍了所提出的机器的一般非线性磁等效电路模型,该模型在机器的三维(3D)视图中包括所有可能的磁通路径,其中采用麦克斯韦应力张量来模拟空间中的电磁力。通过与3D有限元分析工具的仿真结果进行比较,评估了模型的准确性。

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