Pseudo direct drive simulation and analysis

作者: Carlos Guilherme da Costa Neves , Aly Ferreira Flores Filho , Mateus Felipe Goettems , Pablo Augusto Machado Borges

DOI: 10.1108/COMPEL-01-2018-0008

关键词:

摘要: Purpose The purpose of this paper is to simulate a pseudo direct drive (PDD) by using permanent magnet arrays. Design/methodology/approach A 2D finite element model the PDD was built. The static magnetic torque on air-gaps obtained Coulomb’s virtual work method Ansys Maxwell software. To relative movement between input rotor and output rotor, two bands were applied. Findings The PDD’s relation proved. simulated presents low cogging torque. Practical implications The manufacturing steps materials applied in construction coaxial gear, main component, are presented. Originality/value The value present numerical techniques gear.

参考文章(13)
Linni Jian, Guoqing Xu, Yu Gong, Jianjian Song, Jianing Liang, Ming Chang, Electromagnetic Design and Analysis of a Novel Magnetic-Gear-Integrated Wind Power Generator Using Time-Stepping Finite Element Method Progress in Electromagnetics Research-pier. ,vol. 113, pp. 351- 367 ,(2011) , 10.2528/PIER10121603
B. Davat, Z. Ren, M. Lajoie-Mazenc, The movement in field modeling IEEE Transactions on Magnetics. ,vol. 21, pp. 2296- 2298 ,(1985) , 10.1109/TMAG.1985.1064185
Mohammed Bouheraoua, Jiabin Wang, Kais Atallah, Slip recovery and prevention in Pseudo Direct Drive permanent magnet machines energy conversion congress and exposition. pp. 2162- 2169 ,(2013) , 10.1109/ECCE.2013.6646974
P. M. Tlali, R-J. Wang, S. Gerber, Magnetic gear technologies: A review international conference on electrical machines. pp. 544- 550 ,(2014) , 10.1109/ICELMACH.2014.6960233
J. Coulomb, G. Meunier, Finite element implementation of virtual work principle for magnetic or electric force and torque computation IEEE Transactions on Magnetics. ,vol. 20, pp. 1894- 1896 ,(1984) , 10.1109/TMAG.1984.1063232
Linni Jian, Kwok-Tong Chau, Analytical Calculation of Magnetic Field Distribution in Coaxial Magnetic Gears Progress in Electromagnetics Research-pier. ,vol. 92, pp. 1- 16 ,(2009) , 10.2528/PIER09032301
J. Wang, W. Wang, K. Atallah, D. Howe, Demagnetization Assessment for Three-Phase Tubular Brushless Permanent-Magnet Machines IEEE Transactions on Magnetics. ,vol. 44, pp. 2195- 2203 ,(2008) , 10.1109/TMAG.2008.2001074
D.E. Hesmondhalgh, D. Tipping, A multielement magnetic gear IEE Proceedings B Electric Power Applications. ,vol. 127, pp. 129- 138 ,(1980) , 10.1049/IP-B.1980.0017
Xianglin Li, Kwok-Tong Chau, Ming Cheng, Wei Hua, COMPARISON OF MAGNETIC-GEARED PERMANENT- MAGNET MACHINES Progress in Electromagnetics Research-pier. ,vol. 133, pp. 177- 198 ,(2013) , 10.2528/PIER12080808
K. Atallah, D. Howe, A novel high-performance magnetic gear IEEE Transactions on Magnetics. ,vol. 37, pp. 2844- 2846 ,(2001) , 10.1109/20.951324