标题: 毫米波低成本菲涅尔极板透镜天线设计
Low Cost Fresnel Zone Plate Lens Antenna for Millimeter Waves
作者: 赖易楚
黄瑞彬
Lai, Yi-Chu
Hwang,Ruey-Bing
电信工程研究所
关键字: 毫米波天线;菲涅尔极板天线;波束偏移;millimeter wave antenna;Fresnel zone plate antenna;beam steering
公开日期: 2017
摘要: 在本论文中,设计、制造和量测了低成本的菲涅尔极板透镜天线。该天线由产生球面波前的喇叭天线以及将球面波前转换成平面波远场的菲涅尔极板透镜所组成。具体来说,这一类的菲涅尔极板结构是在常用于为波频段的低成本介电质基板FR4实现的。与导波结构在基板内传波不同,此种结构的波是散射,包括了在基板上的穿透与反射。因此在有损介电质中吸收的能量相对不那么显着。此外,独立介电质板是类法布立-培若结构,因此必须适当的选择介电质基板的厚度,来获得操作频带下最大的透射率。另外,偏移的菲涅尔极板透镜也被用于让主波束向偏移角辐射。本文作者实施了几个变形的菲涅尔极板透镜,用于观察其偏移的主波束角度,量测与模拟的结果大致符合。
In this thesis, a low cost Fresnel Zone Plate lens antenna was designed, fabricated and measured. The antenna under consideration consists of a horn antenna for generating the spherical wave front, and a Fresnel Zone Plate lens for converting the spherical wave front into the plane wave in far field. Specifically, such a class of Fresnel Zone structures was implemented on a low-cost dielectric substrate, FR4, which is commonly used in microwave region. Different from the guided-wave structure, the wave is scattering, which includes the transmission and reflection, by the thin dielectric slab rather than propagating within it; thus, the energy absorbed by the lossy dielectric is relatively less significant. Additionally, the free-standing dielectric slab is a Fabry-Perot-like structure, the dielectric thickness has to be properly chosen to obtain maximum transmission in the operation frequency bandwidth.
Furthermore, the offset Fresnel Zone Plate lens was also developed to have the main-beam radiate toward an offset angle. This author has implemented several deformed Fresnel Zone plate lenses for observing the offset radiation main-beam angles; the agreement between the measured and simulated results, in general, is good.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070460294
http://hdl.handle.net/11536/141974
显示于类别:Thesis