Impact of Soft Magnetic Material on Design of High-Speed Permanent-Magnet Machines

磁铁 铜损耗 电磁线圈 材料科学 堆栈(抽象数据类型) 电工钢 磁芯 机械工程 芯(光纤) 功率密度 操作点 功率(物理) 汽车工程 工程类 计算机科学 冶金 电气工程 复合材料 物理 量子力学 程序设计语言
作者
Nuwantha Fernando,Gaurang Vakil,Puvan Arumugam,Emmanuel Amankwah,Chris Gerada,Serhiy Bozhko
出处
期刊:IEEE Transactions on Industrial Electronics [Institute of Electrical and Electronics Engineers]
卷期号:64 (3): 2415-2423 被引量:56
标识
DOI:10.1109/tie.2016.2587815
摘要

This paper investigates the effect of two soft magnetic materials on a high speed machine design, namely 6.5% Silicon Steel and Cobalt-Iron alloy. The effect of design parameters on the machine performance as an aircraft starter-generator is analysed. The material properties which include B-H characteristics and the losses are obtained at different frequencies under an experiment and used to predict the machine performance accurately. In the investigation presented in this paper, it is shown that machines designed with 6.5% Silicon Steel at a high core flux density has lower weight and lower losses than the Cobalt-Iron alloy designs. This is mainly due to the extra weight contributed by the copper content especially in the end-windings. Due to the high operating frequencies, the core-losses in the Cobalt-Iron machine designs are found to outweigh the copper-losses incurred in the Silicon Steel machines. It is also shown that change in stack length/number of turns has a considerable effect on the copper losses at starting, however has no significant advantage on rated efficiency which happens to be in a field-weakening operating point. It is also shown that the performance of the machine designs depend significantly on material selection and the operating point of the core. The implications of the variation of design parameters on the machine performance is discussed and provides insight into the influence of parameters that effect overall power density.
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