DocumentCode :
1960434
Title :
A hybrid optimal analysis for the design of passive shimming elements in high homogeneous permanent magnets
Author :
Yingying, Yao ; Dexin, Xie
Author_Institution :
Shenyang Univ. of Technol., China
fYear :
2002
fDate :
8-11 April 2002
Abstract :
Passive shimming is cheaper, simpler and more effective than active shimming. However it is very tedious to realize passive shimming because the position determination of shimming elements is concerned with the experience of the designer. This paper presents a useful and simple method to design the passive shimming system for homogeneous permanent magnets. An optimal model is set up to determine the location and size of the ferromagnetic shimming elements. To obtain a global solution of the optimization problem with less computational effort, a hybrid optimal algorithm is presented. First, the improved genetic algorithm is used as the initial optimal tool. Then the optimal shim´s size is computed by steepest descent algorithm combined with design sensitivity analysis starting from the proper initial solution. Finally, the shim´s position is chosen as the design variables to obtain the global optimal solution. A numerical implementation shows the proposed method can design the shimming system intelligently and effectively.
Keywords :
ferromagnetic materials; genetic algorithms; permanent magnets; MRI; design sensitivity analysis; ferromagnetic shimming elements; genetic algorithm; highly homogeneous permanent magnets; hybrid optimal analysis; location; magnetic resonance imaging; optimal model; optimization problem; passive shimming elements; size; steepest descent algorithm;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Computation in Electromagnetics, 2002. CEM 2002. The Fourth International Conference on (Ref. No. 2002/063)
Type :
conf
DOI :
10.1049/ic:20020172
Filename :
1225623
Link To Document :
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