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Topology Optimization of a Magnetic Resonator Using Finite-Difference Time-Domain Method for Wireless Energy Transfer

机译:时差有限域法用于无线能量传输的谐振器拓扑优化

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摘要

In this paper, a magnetic resonator for wireless energy transfer system is designed using topology optimization based on an electromagnetic wave analysis. To analyze the magnetic resonator, the finite-difference time-domain method in a 2-D transverse magnetic mode is used with a Gaussian pulse source and perfectly matched layers. The topology optimization using solid isotropic material with the penalization method of a magnetic resonator is conducted to maximize magnetic energy. After these approaches, the fast Fourier transform is used to obtain the response of the magnetic resonator system over a wide range of frequencies.
机译:在本文中,基于电磁波分析的拓扑优化设计了用于无线能量传输系统的磁谐振器。为了分析磁谐振器,将二维横向磁模式的时域有限差分法与高斯脉冲源和完美匹配的层一起使用。使用固态各向同性材料和磁谐振器的惩罚方法进行拓扑优化,以使磁能最大化。在这些方法之后,使用快速傅立叶变换来获得磁谐振器系统在较宽频率范围内的响应。

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