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Numerical Analysis and Design Optimization of a Homopolar Inductor Machine Used for Flywheel Energy Storage

机译:飞轮储能同极感应器的数值分析与设计优化

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This paper investigates a homopolar inductor machine (HIM) for flywheel energy storage in electromagnetic launch applications. An equivalent 2-D finite-element model is presented to predict the machine behavior, and the effectiveness of the equivalence is validated by the comparison of 2-D and 3-D results. Based on the 2-D model, the rotor tooth shape is then optimized to achieve high fundamental value of the air-gap flux density for a given rotor diameter. It is shown that the proposed 3-D to 2-D equivalence can predict the performance of the HIM in an accurate and fast way, which is quite valuable in the design stage of a HIM.
机译:本文研究了用于电磁发射应用中飞轮能量存储的同极感应器(HIM)。提出了一个等效的二维有限元模型来预测机器行为,并且通过比较二维和三维结果验证了等效性的有效性。然后,基于二维模型,优化转子齿的形状,以在给定的转子直径下实现气隙磁通密度的高基本值。结果表明,所提出的3-D到2-D等效性可以准确,快速地预测HIM的性能,这在HIM的设计阶段非常有价值。

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