Finite Element Modeling of Electromagnetic Force for Magnetic Levitation Planar Motor
- DOI
- 10.2991/978-94-6463-040-4_143How to use a DOI?
- Keywords
- Finite element; Coil array; Lorentz Force Volume Integral; Surface motor
- Abstract
In this paper, the finite element model of the magnetic levitation planar motor is established based on the finite element simulation software COMSOL, and the three directional forces of the electrified coil group are obtained. To verify the correctness of the established finite element model, the coil group is equivalently replaced, and the Lorentz force formula is used to establish the analytical model of the forces in all directions of the coil. The difference between the analytical model and the finite element model is judged by calculating the root mean square error of the analytical model and the finite element model. The obtained results prove that the difference between the analytical model and the finite element model is small, which proves the correctness of the finite element model established in this paper.
- Copyright
- © 2023 The Author(s)
- Open Access
- Open Access This chapter is licensed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International License (http://creativecommons.org/licenses/by-nc/4.0/), which permits any noncommercial use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license and indicate if changes were made.
Cite this article
TY - CONF AU - Zihao Wang AU - Shengguo Zhang AU - Chao Ma AU - Changxun Yu AU - Wenru Xu PY - 2022 DA - 2022/12/27 TI - Finite Element Modeling of Electromagnetic Force for Magnetic Levitation Planar Motor BT - Proceedings of the 2022 3rd International Conference on Artificial Intelligence and Education (IC-ICAIE 2022) PB - Atlantis Press SP - 950 EP - 955 SN - 2589-4900 UR - https://doi.org/10.2991/978-94-6463-040-4_143 DO - 10.2991/978-94-6463-040-4_143 ID - Wang2022 ER -