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3-D Printed High-Gain Wideband Waveguide Fed Horn Antenna Arrays for Millimeter-Wave Applications

机译:适用于毫米波应用的3D打印高增益宽带波导馈电喇叭天线阵列

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摘要

3-D printed air-filled waveguide fed horn antenna arrays are investigated in the Ka-band. Pyramidal E-plane horn antennas with a small size are introduced as the radiating element to improve the bandwidth and radiation characteristics of the array. Commercial direct metal laser sintering technology is applied to print the antenna structure in a whole piece. Excellent operating performance including wide impedance bandwidths of 25.8% and 23.8% for vertical bar S-11 vertical bar < -10 dB, gains up to 27.5 and 33.8 dBi with a variation of less than 1.5 dB over the operating band and radiation efficiencies of around 90% and 80% is obtained experimentally by two fabricated prototypes consisting of 64 and 256 radiating elements, respectively. Stable radiation patterns with low cross polarization are confirmed as well. The array designs and results obtained in this paper verify the feasibility of utilizing advanced a 3-D printing technique to realize millimeter-wave large-size antenna arrays with complicated multilayered configurations, which is of value for various wideband millimeter-wave wireless applications.
机译:在Ka波段中研究了3-D打印的充气式波导馈电喇叭天线阵列。引入了小尺寸的金字塔形E平面号角天线作为辐射元件,以改善阵列的带宽和辐射特性。商业直接金属激光烧结技术被应用于整体印刷天线结构。出色的操作性能,包括垂直条S-11垂直条<-10 dB的宽阻抗带宽分别为25.8%和23.8%,增益高达27.5和33.8 dBi,在整个工作频带内的变化小于1.5 dB,辐射效率约为90%和80%是通过分别由64个和256个辐射元件组成的两个预制原型实验获得的。还确认了具有低交叉极化的稳定辐射图。本文获得的阵列设计和结果证明了利用先进的3D打印技术来实现具有复杂多层配置的毫米波大型天线阵列的可行性,这对各种宽带毫米波无线应用都具有价值。

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