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3-D Optimal Shape Design of Pole Piece in Permanent Magnet MRI Using Parameterized Nonlinear Design Sensitivity Analysis

机译:基于参数化非线性设计灵敏度分析的永磁MRI极靴3-D最佳形状设计

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摘要

The pole piece of a permanent magnet magnetic resonance imaging (MRI) is optimally designed in three-dimensional (3-D) space, taking into account the nonlinearity of materials to get high homogeneous magnetic fields in the working region. The pole face is parameterized using a B-spline surface and optimized using 3-D nonlinear design sensitivity analysis based on the 3-D finite-element method. An optimal design result shows how the nonlinear magnetic property of the yoke and column, as well as the pole piece, affect the magnetic-field homogeneity in the working region, although the MRI system has a large air gap.
机译:永磁体磁共振成像(MRI)的极靴是在三维(3-D)空间中进行优化设计的,其中考虑到了材料的非线性,以便在工作区域中获得较高的均匀磁场。极面使用B样条曲面进行参数化,并使用基于3-D有限元方法的3-D非线性设计灵敏度分析进行优化。最佳的设计结果表明,尽管MRI系统具有较大的气隙,但磁轭,磁柱以及极靴的非线性磁特性如何影响工作区域中的磁场均匀性。

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