Efficient optimal design of electromagnetic actuators using space mapping

被引:8
作者
Encica, L.
Echeverria, D.
Lomonova, E. A.
Vandenput, A. J. A.
Hemker, P. W.
Lahaye, D.
机构
[1] Eindhoven Univ Technol, Dept Elect Engn, Electromech & Power Elect Grp, NL-5600 MB Eindhoven, Netherlands
[2] Ctr Math & Comp Sci, Dept Modeling Anal & Simulat, Comp & Control Grp, NL-1098 SJ Amsterdam, Netherlands
关键词
linear electromagnetic actuators; optimal design; space mapping; finite elements; equivalent circuits;
D O I
10.1007/s00158-006-0054-6
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Engineering optimization procedures employ highly accurate numerical models that typically have an excessive computational cost, e.g., finite elements (FE). The space mapping (SM) technique speeds up the minimization procedure by exploiting simplified (less accurate) models. We will use the SM terminology of fine and coarse to refer to the accurate and inaccurate models, respectively. SM implementation in the field of electromagnetic actuators design, in the context of constrained optimization, is a rather unexplored topic. A linear voice coil actuator is chosen as a benchmark test example. The key element in SM is the so-called SM function, which efficiently corrects the imprecise results that can be obtained with just coarse information. SM is used to solve a shape optimization problem. The design problem is stated as a minimization in which the computational cost lies completely in the constraint evaluation; thus, SM is applied only to the constraints. A mathematical description of the approach is presented in this paper and two implementations are compared. The solution of the SM optimization is validated (locally) by means of a standard minimization routine. The numerical results obtained show high efficiency of the SM-based optimization algorithm, reflected by a significantly low number of fine model simulations and an overall low computational effort.
引用
收藏
页码:481 / 491
页数:11
相关论文
共 14 条
[1]   Space mapping: The state of the art [J].
Bandler, JW ;
Cheng, QSS ;
Dakroury, SA ;
Mohamed, AS ;
Bakr, MH ;
Madsen, K ;
Sondergaard, J .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2004, 52 (01) :337-361
[2]   SPACE MAPPING TECHNIQUE FOR ELECTROMAGNETIC OPTIMIZATION [J].
BANDLER, JW ;
BIERNACKI, RM ;
CHEN, SH ;
GROBELNY, PA ;
HEMMERS, RH .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 1994, 42 (12) :2536-2544
[3]   Electromagnetic optimization exploiting aggressive space mapping [J].
Bandler, JW ;
Biernacki, RM ;
Chen, SH ;
Hemmers, RH ;
Madsen, K .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 1995, 43 (12) :2874-2882
[4]  
Bazaraa M.S., 1993, NONLINEAR PROGRAMMIN
[5]   A new design technique of magnetic systems using space mapping algorithm [J].
Choi, HS ;
Kim, DH ;
Park, IH ;
Hahn, SY .
IEEE TRANSACTIONS ON MAGNETICS, 2001, 37 (05) :3627-3630
[6]   Optimisation in electromagnetics with the space-mapping technique [J].
Echeverría, D ;
Lahaye, D ;
Encica, L ;
Hemker, PW .
COMPEL-THE INTERNATIONAL JOURNAL FOR COMPUTATION AND MATHEMATICS IN ELECTRICAL AND ELECTRONIC ENGINEERING, 2005, 24 (03) :952-966
[7]  
ENCICA L, 2004, 11 INT POW EL MOT CO
[8]  
FINKEL DE, 2003, CRSCTR0311 N CAR STA
[9]   The electromagnetic actuator design problem:: A general and rational approach [J].
Fitan, E ;
Messine, F ;
Nogarède, B .
IEEE TRANSACTIONS ON MAGNETICS, 2004, 40 (03) :1579-1590
[10]   A Constraint Mapping Approach to the Structural Optimization of an Expensive Model using Surrogates [J].
Leary, Stephen J. ;
Bhaskar, Atul ;
Keane, Andy J. .
OPTIMIZATION AND ENGINEERING, 2001, 2 (04) :385-398