A Novel 3-D Analytical Modeling Method of Trapezoidal Shape Permanent Magnet Halbach Array for Multi-objective Optimization

Journal of Electrical Engineering & Technology - Tập 14 - Trang 635-643 - 2019
Jiaheng Duan1, Song Xiao1, Kunlun Zhang1,2, Yongzhi Jing1,2
1School of Electrical Engineering, Southwest Jiaotong University, Chengdu, China
2Key Laboratory of Magnetic Suspension Technology and Maglev Vehicle, Ministry of Education, Chengdu, China

Tóm tắt

In this paper, a novel three-dimension magnetic flux density analytical model of linear permanent magnet (PM) Halbach arrays with trapezoidal shape PMs, is established based on the theory of magnetic charge. The proposed analytical model is numerically efficient and can be utilized to evaluate the effects on motor performance caused by varying their configurations. Furthermore, the configurations of PMs for both single and double-sided structures are optimized exploiting a surrogate model assisted by a multi-objective optimization algorithm, where the surrogated model is constructed by the kriging method with expected improvement utility function. The validity and accuracy of this proposed analytical model is verified via finite element modeling, the optimization results with different schemes of weight distribution show the further improvement of magnetic flux density distribution.

Tài liệu tham khảo

Compter JC, Lomonova EA (2003) Direct 3-D method for performance prediction of a linear moving coil actuator with various topologies. IEE Proc Sci 150(4):183–191 You YM, Lin H (2012) Optimal design of a distributed winding type axial flux permanent magnet synchronous generator. J Electr Eng Technol 7(1):69–74 Jang SM, Lee SH (2002) Comparison of two types of PM linear synchronous servo and miniature motor with air-cored film coil. IEEE Trans Magnetics 38(5):3264–3266 Zhang YQ, Yu MH (2010) Field and thrust analysis of linear servo motor with permanent-magnet of different shapes. In: Proceedings of IEEE ICEM conference, Kuala Lumpur, Malaysia Zhang YQ, Yu MH (2011) Analysis and design of double-sided air core linear servo motor with trapezoidal permanent magnets. IEEE Trans Magnetics 47(10):3236–3239 Meessen KJ, Gysen BL (2008) Halbach permanent magnet shape selection for slotless tubular actuators. IEEE Trans Magnetics 44(11):4305–4308 Paul S, Bobba D (2012) Source field modeling in air using magnetic charge sheets. IEEE Trans Magnetics 48(11):3879–3882 Akoun G, Yonnet JP (1984) 3D analytical calculation of the forces exerted between two cuboidal magnets. IEEE Trans Magnetics 20(5):1962–1964 Barba PD (2009) Multi-objective shape design in electricity and magnetism. Springer Science & Business Media, New York, pp 63–69 Xiao S, Rotaru M, Sykulski JK (2013) Adaptive weighted expected improvement with rewards approach in kriging assisted electromagnetic design. IEEE Trans Magnetics 49(5):2057–2060 Ren ZY, Zhang DH, Koh CS (2013) A new sensitivity-based reliability calculation algorithm in the optimal design of electromagnetic devices. J Electr Eng Technol 8(2):331–338 Xia B, Ren ZY, Zhang YL, Koh CS (2014) An adaptive optimization algorithm based on kriging interpolation with spherical model and its application to optimal design of switched reluctance motor. J Electr Eng Technol 9(5):1544–1550 Xiao S, Rotaru M, Sykulski JK (2012) Exploration versus exploitation using kriging surrogate modelling in electromagnetic design. COMPEL 31(5):1541–1551