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3D Antenna for Wireless Power Transmission - Aperture Coupled Microstrip Antenna with Dielectric Lens

机译:用于无线电力传输的3D天线 - 具有介电镜头的光圈耦合微带天线

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Nowadays 3D printers are useful for the development and rapid prototyping of dielectric structures for radiation manipulation and support of antennas. This is possible since the materials used in this machines are essentially dielectric. These can be used as radiating elements (dielectric resonators), as radiation handlers (lenses) or as a supporting base for applying conductive material to radiation (substrates). In this paper we explore 3D printing technology to develop a lens antenna for wireless power transfer operating at 20 GHz. The design, simulation and measurement of an aperture coupled microstrip antenna with dielectric lens is presented and discussed. The lens is used to focus the beam of lower gain feed antenna to produce a highly directive pattern with low side lobe.
机译:如今,3D打印机对于介电结构的开发和快速原型是有用的,用于辐射操纵和天线的支撑。 这是可能的,因为该机器中使用的材料基本上是电介质。 这些可以用作辐射元件(介电谐振器),作为辐射处理器(透镜)或用于将导电材料施加到辐射(基板)的支撑基座。 在本文中,我们探索了3D打印技术,开发用于20 GHz的无线电力传输的镜头天线。 提出和讨论了具有介电镜片的孔径耦合微带天线的设计,模拟和测量。 镜头用于聚焦下增益馈送天线的光束以产生具有低侧凸的高度指示图案。

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