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Physical Optics and full-wave simulations of transmission of electromagnetic fields through electrically large planar meta-sheets

机译:物理光学和通过电大平面超薄板传输电磁场的全波模拟

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摘要

Ultra-thin metamaterials, called meta-surfaces or meta-sheets, open up new opportunities in designing microwave radomes, including an improved transmission over a broader range of antenna scan angles, tailorable and reconfigurable frequency bands, polarization transformations, one-way transmission and switching ability. The smallness of the unit-cells combined with the large electrical size of microwave radomes significantly complicate full-wave numerical simulations as a very fine sampling over an electrically large area is required. Physical Optics can be used to approximately describe transmission through the radome in terms of the homogenized transmission coefficient of the radome wall. This paper presents the results of numerical simulations of electromagnetic transmission through planar meta-sheets (infinite and circularly shaped) obtained by using a full-wave electromagnetic field simulator and a PO-based solution.
机译:超薄超材料(称为超表面或超薄片)为设计微波天线罩开辟了新机会,包括在更宽的天线扫描角度范围内改善传输,可定制和可重新配置的频带,极化变换,单向传输和切换能力。单位体积的小巧与微波天线罩的较大电气尺寸相结合,使全波数值模拟大大复杂化,因为需要在较大的电气面积上进行非常精细的采样。物理光学可以用来根据天线罩壁的均匀透射系数大致描述通过天线罩的透射。本文介绍了通过使用全波电磁场模拟器和基于PO的解决方案获得的通过平面元薄片(无限和圆形)的电磁传输的数值模拟结果。

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