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Realization of Dielectric Sheets for Gain Improvement of Ultra-Wideband Horn Antennas Using 3D Printer Technology

机译:使用3D打印机技术实现介电薄板以提高增益的超宽带号角天线

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摘要

In this work, 3D printing technology had been used to prototyped 10 dielectric sheets with relative dielectric constant of 2.5 for gain improvement of a TEM horn antenna. By loading the 3D printed dielectric sheets to the aperture of the horn antenna it is achieved to improve the radiation performance of the antenna over an ultra-wide operation band of 2-13 GHz. Here the Periodic dielectric sheets are designed to function similarly to a dielectric lens for focusing the incoming electromagnetic waves to increase directivity properties, while keeping their mismatching characteristics with less size and low manufacturing cost compared to its counterpart lens designs. The dielectric sheets had been prototyped via the use of 3D printing technology for experimental measurements. The measured performance of the proposed 3D printed dielectric loaded TEM horn antenna is compared with its counterpart ultra-wide band gain improvement methods for horn antennas in literature. From the measured results of the prototyped module, not only the proposed 3D printed dielectric sheets are smaller and have lower cost compared to their counterpart designs but also achieves to improve the gain characteristics of the antenna design over an ultra-wide band operation band without a distortion on antenna's S-11 characteristics.
机译:在这项工作中,已使用3D打印技术对10个介电片进行原型制作,相对介电常数为2.5,以提高TEM喇叭天线的增益。通过将3D打印的介电片加载到喇叭天线的孔中,可以在2-13 GHz的超宽工作频带上改善天线的辐射性能。在此,周期性电介质片的设计类似于电介质透镜的功能,用于聚焦入射的电磁波以增加方向性,同时与它们的对应透镜设计相比,以较小的尺寸和较低的制造成本保持其失配特性。通过使用3D打印技术对介电板进行原型制作以进行实验测量。文献中将拟议的3D打印介质加载式TEM喇叭天线的测量性能与其对应的喇叭天线超宽带增益改善方法进行了比较。从原型模块的测量结果来看,与同类设计相比,拟议的3D打印介电片不仅更小,成本更低,而且还可以在不使用超宽带工作频带的情况下提高天线设计的增益特性。天线的S-11特性失真。

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