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3-D Printer Based Lens Design Method for Integrated Lens Antennas

机译:基于3-D打印机的集成透镜天线透镜设计方法

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摘要

We propose a new and straightforward dielectric lens design method to increase the gain of integrated lens antennas (ILAs). Our lens is divided into several cone-shaped radial sections. Each section consists of specific permittivity to provide desired phase delays for the waves passing through the section. Our method does not depend on the operating frequencies and the physical appearance of the lens, because all the radial sections share one common phase center as a starting point. Accordingly, to change the main beam direction, we only need to rearrange the sections. However, the required permittivity is all different in every section, which is extremely difficult to be realized using conventional dielectric materials. To fabricate the required permittivity based on an effective medium theory, we use a cutting-edge three-dimensional printing technology. Consequently, we can obtain all the required permittivity using only one base printing material. Through experiments, we can show that our lens not only can form a desired beam but also can increase gain in the target direction, which proves the validity of our lens design method.
机译:我们提出了一种新的,直接的介电透镜设计方法,以增加集成透镜天线(ILA)的增益。我们的镜头分为几个圆锥形的径向部分。每个部分都包含特定的介电常数,以便为穿过该部分的波提供所需的相位延迟。我们的方法不依赖于工作频率和透镜的物理外观,因为所有径向部分都以一个公共的相位中心为起点。因此,要更改主光束方向,我们只需要重新排列这些部分即可。但是,所需的介电常数在每个部分都不同,这是使用常规介电材料很难实现的。为了根据有效的介质理论制造所需的介电常数,我们使用了最先进的三维打印技术。因此,我们仅使用一种基础印刷材料即可获得所有所需的介电常数。通过实验可以看出,我们的透镜不仅可以形成期望的光束,而且可以增加目标方向的增益,这证明了我们的透镜设计方法的有效性。

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