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Asynchronous machine with optimized distribution of electrical losses between stator and rotor

机译:优化了定子和转子之间电损耗分布的异步电机

摘要

The invention relates to an asynchronous machine (1) as can be used particularly in electric vehicles or hybrid vehicles. The asynchronous machine (1) has a rotor (5) and a stator (3). The asynchronous machine is designed and controlled in such a manner that it has a pole pair number p of p=3. Because of the reduced yoke saturation that can consequently be achieved, the stator yoke (9) can be designed with a lesser height hy1, such that a ratio of the outer rotor diameter D2a to the outer stator diameter D1a can assume values between 0.7 and 0.8. As a result, enlarged rotor teeth (19) and correspondingly enlarged rotor grooves (21) can be formed in the rotor (5), such that electrical losses in the material in the rotor grooves (21) acting as the rotor coil element (23) are smaller in comparison to conventional asynchronous machines. The electrical losses occurring to a greater extent in the stator (3) compensating for this lead to a lesser warming of the stator (3) than would be the case with the rotor (5) as the stator (3) can be cooled by simple means. Overall, a higher continuous torque can thus be achieved with the asynchronous machine (1) according to the invention.
机译:本发明涉及一种异步电机( 1 ),该异步电机尤其可以用在电动汽车或混合动力汽车中。异步电机( 1 )具有转子( 5 )和定子( 3 )。异步电机的设计和控制方式是,其极对数p为p = 3。由于可以实现降低的磁轭饱和,因此可以将定子磁轭( 9 )设计为具有较小的高度hy 1 ,从而使外转子的比率定子外直径D 1 a 的直径D 2 a 可以取0.7到0.8之间的值。结果,可以在转子( 5 )中形成扩大的转子齿( 19 )和相应扩大的转子槽( 21 )。与传统的异步电机相比,用作转子线圈元件( 23 )的转子凹槽( 21 )中材料的电损耗较小。与转子相比,定子( 3 )中发生的更大程度的电损耗可以补偿定子( 3 )的变暖。作为定子( 3 )的( 5 )可以通过简单的方法冷却。总体上,根据本发明的异步电机( 1 )因此可以实现更高的连续转矩。

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