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Optimization on the tooth top shape of a high speed permanent magnetic generator

机译:高速永磁发电机齿顶形状的优化

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Currently, there is significant attention being paid to the development of high-speed machines including motors and generators. In particular, permanent magnet machines are gaining more traction due to their outstanding efficiency, high power density, small size, low weight, simple mechanical construction, easy maintenance and good reliability. The higher the motor speed, the smaller the electric machine volume for the same power output. However, the heat or loss density of the machine is proportional to its power density, and the structure design aiming to better the loss distributing becomes a practical challenge for high speed machines. To ensure that the magnets or rotor bars can be retained safely, often a metal is designed on rotor outer surface, and large eddy loss would be generated while machine operating with a very high frequency electromagnetic field. In this case, scholars make efforts to minimize eddy current losses whilst providing mechanical integrity, which may benefit both the machine efficiency and thermal management. In this paper, a 3kW, 80k rpm high speed permanent magnetic generator is investigated, and its stator tooth top shape is optimized to reduce eddy losses in the rotor sleeve. During the process some other output performance parameters are considered by the proposed optimization mathematical model.
机译:当前,对包括电动机和发电机的高速机器的开发给予了极大的关注。特别是,永磁电机因其出色的效率,高功率密度,小尺寸,轻巧,机械结构简单,易于维护和可靠性而获得了越来越多的关注。电机速度越高,相同功率输出的电机体积就越小。但是,电机的热量或损耗密度与功率密度成正比,因此,旨在更好地损耗分配的结构设计成为高速电机的一项实际挑战。为了确保安全地固定磁体或转子条,通常在转子的外表面上设计一种金属,并且当机器在非常高频率的电磁场下运行时,会产生很大的涡流损耗。在这种情况下,学者们努力使涡流损失最小化,同时提供机械完整性,这可能有益于机器效率和热管理。本文研究了一种3kW,80k rpm的高速永磁发电机,并对其定子齿顶形状进行了优化,以减少转子套筒中的涡流损耗。在此过程中,建议的优化数学模型会考虑其他一些输出性能参数。

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