Magnetic force characteristics enhancement by a novel permanent magnetic levitation (PML) analysis method for hybrid maglev

被引:9
作者
Bao, Yeying [1 ]
Zheng, Jun [2 ]
Sun, Ruixue [1 ]
Deng, Zigang [1 ]
机构
[1] Southwest Jiaotong Univ, State Key Lab Tract Power, Chengdu 610031, Peoples R China
[2] Minist Educ, Key Lab Magnet Suspens Technol & Maglev Vehicle, Chengdu 610031, Peoples R China
基金
中国国家自然科学基金;
关键词
Halbach array; Hybrid maglev; Magnetic force; Permanent magnetic levitation; Magnet rail;
D O I
10.1016/j.jmmm.2021.167888
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The hybrid maglev system taking advantage of better carrying capacity in permanent magnetic levitation (PML) and self-stability in superconducting magnetic levitation (SML) has been put forward. PML and SML can share the same magnet rail, which is arranged in Halbach arrays to concentrate the magnetic field on the working region and save magnet materials. Recently, the manned hybrid maglev prototype has been built in Chengdu, China. In this paper, we focus on the PML part, in which the characteristics of the levitation force and the lateral force were studied since they are key factors for load capacity and stability. The research was carried out with both analytic expressions and finite element method. With the relationship between magnetic force and lateral displacement, the recommended maximum lateral displacement was proposed. In addition, considering the end effect of Halbach array, an optimization PML model was designed, which can not only improve the levitation force but also reduce the lateral force. The study offers a reference for the further design and optimization on the PML or the hybrid maglev system involving it.
引用
收藏
页数:8
相关论文
共 27 条
[1]  
[Anonymous], 2001, PERMANENT MAGNET ELE, P126
[2]  
[Anonymous], 1848, Tcaps
[3]   Design of a Halbach magnet array based on optimization techniques [J].
Choi, Jae-Seok ;
Yoo, Jeonghoon .
IEEE TRANSACTIONS ON MAGNETICS, 2008, 44 (10) :2361-2366
[4]   A High-Temperature Superconducting Maglev Ring Test Line Developed in Chengdu, China [J].
Deng, Zigang ;
Zhang, Weihua ;
Zheng, Jun ;
Ren, Yu ;
Jiang, Donghui ;
Zheng, Xinxin ;
Zhang, Jianghua ;
Gao, Pengfei ;
Lin, Qunxu ;
Song, Bo ;
Deng, Changyan .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2016, 26 (06)
[5]  
Du Y., 2020, IEEE T APPL SUPERCON, V30
[6]   Design of New Energy-Efficient Permanent Magnetic Maglev Vehicle Suspension System [J].
Gao, Tao ;
Yang, Jie ;
Jia, Limin ;
Deng, Yongfang ;
Zhang, Weihua ;
Zhang, Zhenli .
IEEE ACCESS, 2019, 7 :135917-135932
[7]   PHYSICAL AND OPTICAL-PROPERTIES OF RARE-EARTH COBALT MAGNETS [J].
HALBACH, K .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH, 1981, 187 (01) :109-117
[8]   Study of superconductor bearings for a 35 kWh superconductor flywheel energy storage system [J].
Han, Y. H. ;
Park, B. J. ;
Jung, S. Y. ;
Han, S. C. .
PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2012, 483 :156-161
[9]  
Hao A., 2014, P 2014 PROGN SYST HL
[10]   Modeling maglev passenger compartment static magnetic fields from linear halbach permanent-magnet arrays [J].
Hoburg, JE .
IEEE TRANSACTIONS ON MAGNETICS, 2004, 40 (01) :59-64