高速应用的固体转子内嵌式永磁电机

P. Arumugam, Zeyuan Xu, G. Vakil, T. Hamiti, S. Bozhko, C. Gerada, S. Pickering
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引用次数: 2

摘要

本文提出了一种用于飞机起动发电机的实心转子内永磁电机。设计的关键问题是满足高起动转矩和高速连续运行两种工况。为这种应用设计的表面安装的PM机器被用作基准。然后,采用固体转子设计IPM机器,使其最大机械应力水平远低于材料的极限拉伸强度(UTS),转子涡流损耗最小。通过有限元(FE)电磁分析和结构分析进行了详细设计。对结构进行了静力和动力分析。研究了减小转子涡流损耗的几种新方法。结果表明,所提出的固体转子概念既满足高转矩和高转速的设计要求,又满足结构和磁的限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solid rotor interior permanent magnet machines for high speed applications
This paper proposes solid rotor Interior Permanent Magnet (IPM) machine for an aircraft starter-generator. The key challenge in the design is to satisfy two operating conditions which are high starting torque and high speed continuous operation. A Surface mounted PM machine designed for such an application is used as a benchmark. Then, the IPM machine is designed adopting a solid rotor to have a maximum mechanical stress level well below the material Ultimate Tension Strength (UTS) and minimal rotor eddy current losses. A detailed design is carried out through Finite Element (FE) electromagnetic and structural analysis. The static and dynamic structural analyses are presented. Several novel approaches to minimize the rotor eddy current losses are investigated. It is shown that the proposed solid rotor concept for IPM fulfils both high torque and high speed design requirements whilst satisfying the structural and magnetic limitations.
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