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一种基于磁悬浮轴承系统的转速标准装置扰动补偿控制策略。

A Disturbance Compensation Control Strategy for Rotational Speed Standard Device Based on AMB System.

作者信息

Chen Yulin, Du Lei, Sun Qiao, Bai Jie

机构信息

Division of Mechanics and Acoustics Metrology, National Institute of Metrology, Beijing 100029, China.

出版信息

Sensors (Basel). 2024 May 13;24(10):3093. doi: 10.3390/s24103093.

Abstract

The rotational speed standard device that can carry loads is the key device for calibrating passive rotational speed sensors. The rotor of the passive rotational speed sensor is connected to the rotor of the standard speed device through a coupling, and the standard reference speed is provided by the standard device. Due to the rotor eccentricity, the unbalanced force of the rotor occurs, and it can not only affect the rotational speed accuracy but can also damage the mechanical bearings of the standard speed device. To solve this issue, a method for suppressing the unbalanced force of the speed standard device based on an active magnetic bearing (AMB) force compensation system is proposed. First, the overall structure of the system is briefly introduced. Then, the force feedback control system model with the AMB as the force actuator is established, and a PI controller is designed to achieve the disturbed force control. Finally, a semi-physical simulation experimental platform is built to verify the effectiveness of the proposed method. The experimental results show that the AMB force compensation system can reduce 84.4%, 81.6%, and 79.8% of the unbalanced vibration force at the frequency of 30 Hz, 90 Hz, and 150 Hz, respectively.

摘要

可承载负载的转速标准装置是校准无源转速传感器的关键装置。无源转速传感器的转子通过联轴器与标准转速装置的转子相连,标准装置提供标准参考转速。由于转子偏心,会产生转子不平衡力,这不仅会影响转速精度,还可能损坏标准转速装置的机械轴承。为解决这一问题,提出了一种基于主动磁轴承(AMB)力补偿系统抑制转速标准装置不平衡力的方法。首先,简要介绍了系统的整体结构。然后,建立了以AMB为力执行器的力反馈控制系统模型,并设计了PI控制器以实现干扰力控制。最后,搭建了半物理仿真实验平台来验证所提方法的有效性。实验结果表明,AMB力补偿系统在30Hz、90Hz和150Hz频率下分别可降低84.4%、81.6%和79.8%的不平衡振动力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/867d/11124821/5facbd192cb0/sensors-24-03093-g001.jpg

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