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Overhang Effect Analysis of a Homopolar HTS Synchronous Generator Using 3D Finite Element Method

机译:三维有限元法占用HTS同步发电机突出效应分析

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In this paper, the overhang effect of a homopolar synchronous generator with high-temperature superconducting (HTS) field winding is analyzed. Homopolar topology can be used to implement stationary field winding, which is advantageous for superconducting electrical rotating machine applications that rotate at a relatively high speed. The homopolar machine has an axial-winding radial-flux structure, unlike general heteropolar machines that have a radial-winding radial-flux structure. Therefore, in order to analyze the characteristics of the homopolar machine more accurately, use of 3D finite element method (FEM) should be considered. The overhang of rotor poles in electrical rotating machines can be used to enhance the flux linkage in armature windings and to improve the output power. Therefore, applying the overhang structure in the development of an electrical rotating machine is a method that can further improve the performance of the machines. In this paper, we use 3D FEM to analyze the overhang effect of a homopolar HTS synchronous generator and present the overhang length required to improve the performance of the machine.
机译:本文分析了均诺同步发电机与高温超导(HTS)场绕组的突出效应。同型拓扑结构可用于实施静止场绕组,这对于超导旋转以相对高速旋转的电旋转机器应用是有利的。瓷机器具有轴向绕组径向通量结构,与具有径向绕组径向通量结构的一般杂开机。因此,为了更准确地分析均多机器的特性,应考虑使用3D有限元方法(FEM)。电动旋转机器中的转子杆的悬垂可用于增强电枢绕组中的磁通连杆,并提高输出功率。因此,在电动旋转机器的开发中施加悬垂结构是一种可以进一步提高机器性能的方法。在本文中,我们使用3D FEM来分析均诺HTS同步发电机的悬垂效果,并呈现提高机器性能所需的悬垂长度。

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