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Flux Weakening Analysis of a Novel Composite-rotor Synchronous Motor

机译:新型复合转子同步电动机的磁通弱化分析

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The paper refers to a novel permanent magnetmotor with composite-rotor, to solve the difficulties of extend speed by "flux weakening". The motor rotor consists of two rotor segments with different permanent magnet materials which one has high coercive force and high remnant such as NdFeB and the other has low coercive force characteristics such as AlNiCo. When applying different strength pulses of magnetizing (demagnetizing) current, air gap magnetic fields of the motor could be varied over wide range with regard to a certain value. To achieve the aim, the paper analyzes magnetization process of permanent magnet and then computes the distribution of air gap magnetic field in different magnetization by using finite element method. The numeral results show the validity of the scheme.
机译:本文是指具有复合转子的新型永磁体,通过“磁通弱化”来解决延伸速度的困难。电动机转子由两个具有不同永磁材料的转子段组成,该转子材料具有高矫顽力和高剩余的诸如NdFeB,另一个具有低矫顽力特性,例如Alnico。当施加不同强度脉冲的磁化(退磁)电流时,在一定值方面,电动机的气隙磁场可以在宽范围内变化。为了实现目的,纸张分析了永磁体的磁化过程,然后使用有限元方法计算不同磁化中的气隙磁场分布。数字结果显示了该方案的有效性。

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