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Level Set-Based Topology Optimization for the Design of an Electromagnetic Cloak With Ferrite Material

机译:基于水平集的拓扑优化设计铁氧体材料的电磁披风

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This paper presents a structural optimization method for the design of an electromagnetic cloak made of ferrite material. Ferrite materials exhibit a frequency-dependent degree of permeability, due to a magnetic resonance phenomenon that can be altered by changing the magnitude of an externally applied dc magnetic field. Thus, such ferrite cloaks have the potential to provide novel functions, such as on-off operation in response to on-off application of an external magnetic field. The optimization problems are formulated to minimize the norm of the scattering field from a cylindrical obstacle. A level set-based topology optimization method incorporating a fictitious interface energy is used to find optimized configurations of the ferrite material. The numerical results demonstrate that the optimization successfully found an appropriate ferrite configuration that functions as an electromagnetic cloak.
机译:本文提出了一种结构优化方法,用于设计由铁氧体材料制成的电磁斗篷。由于磁共振现象可以通过改变外部施加的直流磁场的大小来改变,因此铁氧体材料显示出随频率变化的磁导率。因此,这种铁氧体斗篷有可能提供新颖的功能,例如响应于外部磁场的开-关施加而进行开-关操作。提出了优化问题以最小化来自圆柱障碍物的散射场的范数。基于水平集的拓扑优化方法结合了虚拟的界面能,用于找到铁氧体材料的优化配置。数值结果表明,优化成功地找到了合适的铁氧体配置,该配置可充当电磁斗篷。

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