中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Research on Control Strategy of Hamiltonian Theory for Large Telescope Based on SAPMSM

文献类型:期刊论文

作者Song XL(宋晓莉); Cao ZJ(曹兆锦)
刊名IEEE access
出版日期2024-01-28
卷号12期号:1页码:31960 - 31967
关键词Segmented arc permanent magnet synchronous motor(SAPMSM) Hamiltonian theory large telescopes generalized proportional integral observer(GPIO) anti-interference performance
英文摘要

The azimuth axis drive and control of large telescopes based on Segmented Arc Permanent Magnet Synchronous Motor(SAPMSM)is a current research hotspot,and issues such as unknown parameters and external interference are important factors affecting its tracking accuracy.

This paper proposes a SAPMSM perturbation suppression strategy for large telescopes based on port-controlled Hamiltonian(PCH)theory.In this study,the Hamiltonian mathematical model of SAPMSM is established and the current controller of the SAPMSM is designed to reduce harmonics by configuring the required interconnection and damping matrix.

In order to further improve the accuracy and anti-disturbance performance of speed feedback,a Generalized Proportional Integral Observer(GPIO)is selected for total disturbance observation,estimation and compensation.

The experimental results indicated that the algorithm proposed in this paper has lower harmonic content in the phase current of the SAPMSM,which can ensure good position tracking ability and anti-interference performance of large telescopes.

学科主题天文技术与方法
语种英语
源URL[http://ir.niaot.ac.cn/handle/114a32/2244]  
专题南京天文光学技术研究所_中科院南京天光所知识成果
作者单位南京天文光学技术研究所
推荐引用方式
GB/T 7714
Song XL,Cao ZJ. Research on Control Strategy of Hamiltonian Theory for Large Telescope Based on SAPMSM[J]. IEEE access,2024,12(1):31960 - 31967.
APA Song XL,&Cao ZJ.(2024).Research on Control Strategy of Hamiltonian Theory for Large Telescope Based on SAPMSM.IEEE access,12(1),31960 - 31967.
MLA Song XL,et al."Research on Control Strategy of Hamiltonian Theory for Large Telescope Based on SAPMSM".IEEE access 12.1(2024):31960 - 31967.

入库方式: OAI收割

来源:南京天文光学技术研究所

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