Torque Density Improvement in Transverse Flux Machine using Disc

Balaganesh Boomiraja, R. Kanagaraj
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Abstract

Transverse flux machines are usually designed with either cylindrical rotor or disc rotor structure. In this paper, a disc rotor topology with single layer of permanent magnets per phase is proposed to improve the torque density. Unlike conventional transverse flux machine, the stator construction is simplified by joining c-cores of all phase stacks together in the proposed design. Analytical equations are derived for calculating the electromagnetic torque, magnetizing inductance, and leakage inductance. The disc rotor transverse flux machine is compared with an equivalent cylindrical rotor transverse flux machine using finite element analysis simulation. It is found that the transverse flux machine with disc rotor has higher torque density than that of cylindrical rotor topology.
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利用圆盘提高横向磁通机的转矩密度
横向磁通机通常采用圆柱转子或圆盘转子结构设计。为了提高转矩密度,本文提出了一种每相单层永磁体的圆盘转子拓扑结构。与传统的横向磁通机不同,该设计简化了定子结构,将所有相堆的c铁芯连接在一起。推导了计算电磁转矩、磁化电感和漏感的解析方程。对圆盘转子横向磁通机与等效圆柱转子横向磁通机进行了有限元仿真分析。研究发现,圆盘转子的横向磁通机比圆柱转子拓扑具有更高的转矩密度。
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