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Electromagnetic force ripple suppression strategy of the micro permanent magnet linear motor

机译:微型永磁直线电机电磁力纹波抑制策略

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摘要

In order to make the micro permanent magnet linear motor in this paper have an excellent position response in MEMS application scenarios, an electromagnetic force ripple suppression strategy based on harmonic current injection is proposed. Because of the simulation phenomenon of large force ripple under standard sinusoidal current driving, combined with the non-sinusoidal distribution model of the air-gap magnetic field, it is theoretically verified that the odd harmonic current injection can effectively suppress the force ripple. The electromagnetic force under the fundamental + 3rd/7th harmonic currents and only the fundamental current is compared by simulation. The force ripple coefficient is reduced from 31 to 1.3, and the position response speed is increased by about 11 in the 4 mm position closed-loop response simulation. The experimental results show that under a current with 200 Hz frequency, the motor can achieve a displacement of 5 mm within 0.11 s, providing a peak velocity of 40 mm/s, which verifies the correctness of the design concept and control strategy of the micro linear permanent magnet motor. (c) 2023 The Authors. Published by Elsevier Ltd. This is an open access article under the CCBY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:为了使微永磁直线电机在MEMS应用场景中具有优异的位置响应,该文提出一种基于谐波电流注入的电磁力纹波抑制策略。由于标准正弦电流驱动下力纹波较大的仿真现象,结合气隙磁场的非正弦分布模型,理论验证了奇次谐波电流注入能够有效抑制力纹波。通过仿真比较了基波+3次/7次谐波电流和仅基波电流下的电磁力。在4 mm位置闭环响应仿真中,力纹波系数从31%降低到1.3%,位置响应速度提高约11%。实验结果表明,在200 Hz频率的电流下,电机可在0.11 s内实现5 mm的位移,峰值速度为40 mm/s,验证了微型直线永磁电机的设计理念和控制策略的正确性。(c) 2023 作者。由以下开发商制作:Elsevier Ltd.这是 CCBY-NC-ND 许可 (http://creativecommons.org/licenses/by-nc-nd/4.0/) 下的开放获取文章。

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