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Electromagnetic design of a megawatt high efficiency high speed solid rotor induction motor

机译:兆瓦高效高速固态转子感应电动机的电磁设计

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Compared with other types of motors, solid rotor induction motor has the simplest and most robust construction. This good performance makes the solid rotor induction motors widely used in numerous high speed and high output applications. In this paper, the electromagnetic design process of an 18 MW, 12000 rpm solid rotor induction motor is discussed. In order to improve the rotor electromagnetic properties, the rotor of the developed induction motor is axially slitted with copper end rings. Then the characteristics of the magnetic field distribution, airgap flux density and motor performance are analyzed by using two-dimensional time-stepping finite element method (2D T-S FEM). It is found that the developed motor achieves good performance. Finally, the loss distribution characteristics of the developed motors are studied; and the iron loss caused by the fundamental and harmonic field is also analyzed.
机译:与其他类型的电动机相比,实心转子感应电动机具有最简单,最坚固的结构。这种良好的性能使固体转子感应电动机广泛用于众多的高速和高输出应用中。本文讨论了18 MW,12000 rpm固态转子感应电动机的电磁设计过程。为了改善转子的电磁性能,已开发的感应电动机的转子在轴向上开有铜端环。然后使用二维时步有限元法(2D T-S FEM)分析了磁场分布,气隙磁通密度和电机性能的特征。发现开发的电动机实现了良好的性能。最后,研究了所开发电动机的损耗分布特性。并分析了由基波和谐波引起的铁损。

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