Comparative analysis of single-coil and double-coil active magnetic bearings for high-speed application

被引:5
作者
Debnath, S. [1 ]
Das, U. [2 ]
Biswas, P. K. [2 ]
机构
[1] Sharad Inst Technol Coll Engn, Dept Artificial Intelligence & Data Sci, Kolhapur, Maharashtra, India
[2] Natl Inst Technol Mizoram, Dept Elect Engn, Aizawl, India
关键词
Active magnetic bearing; Controllers; Hardware implementation; I-type actuator; Magnetic analysis; Sensors; And simulation; DESIGN; MACHINE; SYSTEM;
D O I
10.1007/s00202-023-02213-7
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This article compares the single- and double-coil-based active magnetic bearing (AMB) for high-speed application. Present days high-speed rotating machines have vast applications for domestic and industrial purposes. Magnetic bearing supports the load using levitation, which means contact friction is zero, so losses will be very less, and supports very high rpm. This manuscript contains the design of single- and double-coil I-type actuators, magnetic analysis using finite element-based software, simulation, experimental verification, and the high-speed test comparison between the designed systems. The magnetic analysis is performed in ANSYS Maxwell software according to the design data; similarly, simulation is also done in Multisim. After getting the required magnetic analysis data and simulation data, both the AMB designs are implemented in hardware, and the results are compared. For the high-speed test minimum, 10 V and a maximum of 100 V are applied to both AMB rotational systems and a maximum 22425 rpm speed is observed in the tachometer.
引用
收藏
页码:1191 / 1202
页数:12
相关论文
共 18 条
[1]   Effects of Permanent-Magnet Passive Magnetic Bearing on a Two-Axis Actively Regulated Low-Speed Bearingless Motor [J].
Asama, Junichi ;
Asami, Tetsuro ;
Imakawa, Takashi ;
Chiba, Akira ;
Nakajima, Atsushi ;
Rahman, M. Azizur .
IEEE TRANSACTIONS ON ENERGY CONVERSION, 2011, 26 (01) :46-54
[2]   An Active Magnetic Bearing for Thin-Walled Rotors: Vibrational Dynamics and Stabilizing Control [J].
Cole, Matthew O. T. ;
Fakkaew, Wichaphon .
IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2018, 23 (06) :2859-2869
[3]   Active Magnetic Bearing System Using I-Type and U-Type Actuator [J].
Das, Upama ;
Debnath, Sukanta ;
Gupta, Suraj ;
Biswas, Pabitra Kumar ;
Sudhakar Babu, Thanikanti ;
Nwulu, Nnamdi I. .
IEEE ACCESS, 2023, 11 :62780-62798
[4]  
Debnath S., 2021, J. appl. res. technol, V19, P448, DOI 10.22201/icat.24486736e.2021.19.5.1211
[5]   Advanced Magnetic Bearing Device for High-Speed Applications with an I-type Electromagnet [J].
Debnath, Sukanta ;
Biswas, Pabitra Kumar .
ELECTRIC POWER COMPONENTS AND SYSTEMS, 2021, 48 (16-17) :1862-1874
[6]   Design, analysis, and testing of I-type electromagnetic actuator used in single-coil active magnetic bearing [J].
Debnath, Sukanta ;
Biswas, Pabitra Kumar .
ELECTRICAL ENGINEERING, 2021, 103 (01) :183-194
[7]  
Debnath S, 2017, IEEE TRANSP ELECT C
[8]  
Fu ZS, 2016, IEEE INT POWER ELEC, P786, DOI 10.1109/IPEMC.2016.7512385
[9]   High-Speed Electrical Machines: Technologies, Trends, and Developments [J].
Gerada, David ;
Mebarki, Abdeslam ;
Brown, Neil L. ;
Gerada, Chris ;
Cavagnino, Andrea ;
Boglietti, Aldo .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2014, 61 (06) :2946-2959
[10]   Multiphysics Design and Optimization of High-Speed Permanent-Magnet Electrical Machines for Air Blower Applications [J].
Huang, Ziyuan ;
Fang, Jiancheng .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2016, 63 (05) :2766-2774