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Metasurface Antennas: New Models Applications and Realizations

机译:超表面天线:新模型应用和实现

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摘要

This paper presents new designs, implementation and experiments of metasurface (MTS) antennas constituted by subwavelength elements printed on a grounded dielectric slab. These antennas exploit the interaction between a cylindrical surface wave (SW) wavefront and an anisotropic impedance boundary condition (BC) to produce an almost arbitrary aperture field. They are extremely thin and excited by a simple in-plane monopole. By tailoring the BC through the shaping of the printed elements, these antennas can be largely customized in terms of beam shape, bandwidth and polarization. In this paper, we describe new designs and their implementation and measurements. It is experimentally shown for the first time that these antennas can have aperture efficiency up to 70%, a bandwidth up to 30%, they can produce two different direction beams of high-gain and similar beams at two different frequencies, showing performances never reached before.
机译:本文介绍了由印刷在接地电介质板上的亚波长元件构成的超表面(MTS)天线的新设计,实现和实验。这些天线利用圆柱表面波(SW)波前和各向异性阻抗边界条件(BC)之间的相互作用来产生几乎任意的孔径场。它们非常薄,并通过简单的平面单极子激发。通过印刷元素的形状来定制BC,可以在波束形状,带宽和极化方面对这些天线进行很大程度的定制。在本文中,我们描述了新设计及其实现和测量。首次通过实验证明,这些天线的孔径效率最高可达到70%,带宽最高可达到30%,它们可以在两个不同的频率上产生两个不同方向的高增益波束和类似波束,从而显示出从未达到的性能之前。

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