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首页> 外文期刊>IEEE Transactions on Energy Conversion >Influence of Radial Force Harmonics With Low Mode Number on Electromagnetic Vibration of PMSM
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Influence of Radial Force Harmonics With Low Mode Number on Electromagnetic Vibration of PMSM

机译:低模数径向力谐波对PMSM电磁振动的影响

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Permanent magnet synchronous machines (PMSM) have been widely used in a variety of applications. A strong electromagnetic force exists between the rotor magnets and the stator core in a PMSM. The force directly causes mechanical deformation and vibration of the stator. In small PM motors, mechanical vibration comes mainly from the electromagnetic force of the stator. This paper gives the general expression of the frequency and corresponding mode number of radial force harmonics for a PMSM with a three-phase symmetrical double-layer winding. The paper shows that the lowest mode number of radial force harmonics is the greatest common divisor of pole number and slot number. The force harmonics with a low mode number can induce a high mechanical vibration, especially for PMSMs with a fractional slot combination. This is simulated using a weak-coupling electromagnetic–mechanical finite element model. To illustrate the influence of radial force harmonics with a low mode number on vibration, a method to eliminate the lowest mode number force harmonics for the fractional slot combination motor is proposed. A test rig for the 12-slot 8-pole prototype motor is set up. The experimental and simulated results confirm that force harmonics with low mode number have a major impact on vibration.
机译:永磁同步电机(PMSM)已广泛用于各种应用中。 PMSM中的转子磁体和定子铁芯之间存在强大的电磁力。该力直接引起定子的机械变形和振动。在小型永磁电动机中,机械振动主要来自定子的电磁力。本文给出了带有三相对称双层绕组的永磁同步电机的频率和径向力谐波的相应模数。论文表明,径向力谐波的最低模数是极数和槽数的最大公约数。具有低模数的力谐波会引起较高的机械振动,特别是对于带有分数槽组合的PMSM。这是使用弱耦合电磁机械有限元模型来模拟的。为了说明低模数的径向力谐波对振动的影响,提出了一种消除分数槽组合电机的最低模数力谐波的方法。设置了用于12槽8极原型电动机的测试台。实验和仿真结果证实,低模数的力谐波对振动有很大影响。

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