论文标题

磁性屏蔽缸中磁场曲线的最佳逆设计

Optimal Inverse Design of Magnetic Field Profiles in a Magnetically Shielded Cylinder

论文作者

Packer, M., Hobson, P. J., Holmes, N., Leggett, J., Glover, P., Brookes, M. J., Bowtell, R., Fromhold, T. M.

论文摘要

使用主动组件和被动组件来使量身定制的低场环境的磁性屏蔽对于科学,工程和医学成像中的许多应用都需要生成。到目前为止,仅在盾牌的整体体积的一小部分中才有可能进行准确的场无效或现场生成。这是由于主动场生成组件与周围的高渗透性被动屏蔽材料之间的相互作用。在本文中,我们制定了圆柱体上任意的静电电流流量与外部闭合高渗透缸之间的相互作用。我们修改了绿色的函数为磁性矢量电位,并匹配盾牌内部表面上的边界条件,以计算系统产生的总磁场。我们将此公式投入到一个反相反的优化问题中,以设计主动的磁场塑造系统,该系统准确地在封闭的圆柱形无源屏蔽层内部生成任何物理静态磁场。我们通过设计混合系统来说明这种方法,该混合系统在大型内部体积上生成一系列磁场曲线,并在被动组件具有有限的渗透性,厚度和轴向进入孔的真实盾牌中模拟它们。我们的优化过程可以适应设计主动的磁场塑形系统,该系统可以准确地在任何长度的封闭圆柱形屏蔽层的内部中生成任何物理用户指定的静态磁场,从而实现需要准确的磁性屏蔽和控制的系统的开发和微型化。

Magnetic shields that use both active and passive components to enable the generation of a tailored low-field environment are required for many applications in science, engineering, and medical imaging. Until now, accurate field nulling, or field generation, has only been possible over a small fraction of the overall volume of the shield. This is due to the interaction between the active field-generating components and the surrounding high-permeability passive shielding material. In this paper, we formulate the interaction between an arbitrary static current flow on a cylinder and an exterior closed high-permeability cylinder. We modify the Green's function for the magnetic vector potential and match boundary conditions on the shield's interior surface to calculate the total magnetic field generated by the system. We cast this formulation into an inverse optimization problem to design active--passive magnetic field shaping systems that accurately generate any physical static magnetic field in the interior of a closed cylindrical passive shield. We illustrate this method by designing hybrid systems that generate a range of magnetic field profiles to high accuracy over large interior volumes, and simulate them in real-world shields whose passive components have finite permeability, thickness, and axial entry holes. Our optimization procedure can be adapted to design active--passive magnetic field shaping systems that accurately generate any physical user-specified static magnetic field in the interior of a closed cylindrical shield of any length, enabling the development and miniaturization of systems that require accurate magnetic shielding and control.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源