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洛伦兹力磁轴承磁通密度均匀性误差分析与补偿

Analysis and Compensation of Lorentz Force Magnetic Bearing Magnetic Flux Density Uniformity Error.

作者信息

Yu Chunmiao, Cai Yuanwen, Wang Weijie, Han Wenjing, Yin Zengyuan, Han Wenting

机构信息

The Department of Astronautics Science and Technology, Space Engineering University, Beijing 101416, China.

The Astronaut Center of China, Beijing 100094, China.

出版信息

Sensors (Basel). 2024 Apr 24;24(9):2683. doi: 10.3390/s24092683.

Abstract

Aiming at the influence of the magnetic flux density uniformity error (MFDUE) of the Lorentz force magnetic bearing (LFMB) on the sensitivity accuracy of magnetically suspended control and sensing gyroscopes (MSCSGs) on the angular rate of a spacecraft, a high precision measurement method of the angular rate of a spacecraft based on the MFDUE compensation of LFMB is proposed. Firstly, the structure of MSCSG and the sensitivity principle of MSCSG to the spacecraft angular rate are introduced. The mechanism influencing the accuracy of MSCSG to spacecraft angular rate sensitivity is deduced based on the definition of magnetic flux density uniformity. Secondly, the 3D magnetic flux distribution of LFMB is analyzed using ANSYS. The relationship between the rotor tilt angle, tilt angular rate, and magnetic flux density is established. The induced current calculation model due to MFDUE is proposed, and the LFMB magnetic flux density error compensation is realized. Finally, the simulation results show that the estimation accuracy of the induced current by the proposed method can reach 96%, and the simulation and the experiment show that the error compensation method can improve the accuracy of MSCSG in measuring the spacecraft angular rate by 12.5%.

摘要

针对洛伦兹力磁轴承(LFMB)的磁通密度均匀性误差(MFDUE)对磁悬浮控制与传感陀螺仪(MSCSG)测量航天器角速率的灵敏度精度的影响,提出了一种基于LFMB的MFDUE补偿的航天器角速率高精度测量方法。首先,介绍了MSCSG的结构以及MSCSG对航天器角速率的灵敏度原理。基于磁通密度均匀性的定义,推导了影响MSCSG对航天器角速率灵敏度精度的机制。其次,利用ANSYS分析了LFMB的三维磁通分布。建立了转子倾斜角、倾斜角速率与磁通密度之间的关系。提出了由MFDUE引起的感应电流计算模型,实现了LFMB磁通密度误差补偿。最后,仿真结果表明,所提方法对感应电流的估计精度可达96%,仿真和实验表明,该误差补偿方法可将MSCSG测量航天器角速率的精度提高12.5%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75e1/11086367/dad6345bc26e/sensors-24-02683-g001.jpg

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