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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >A 400-GHz High-Gain Quartz-Based Single Layered Folded Reflectarray Antenna for Terahertz Applications
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A 400-GHz High-Gain Quartz-Based Single Layered Folded Reflectarray Antenna for Terahertz Applications

机译:适用于太赫兹应用的400 GHz高增益基于石英的单层折叠式反射阵列天线

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Compact high-gain antennas are highly desired in the high-speed terahertz (THz) wireless system, especially for the space limited application, such as the high-speed inter link inside the high density wireless communication base station. To this end, a 400-GHz folded reflectarray (FRA) antenna with high gain, high aperture efficiency, and compact profile is proposed in this paper. It is composed of a feed source, a single-layered reflectarray using a lithography process on quartz, and a wire-grid polarizer implemented by the printed-circuit-board technology. A 3-D printed fixture is used to assemble all parts together. In order to design accurately the proposed antenna, the THz electromagnetic properties of the supporting dielectric materials are extracted by using a THz time-domain spectrometer system. Then, a single-layered phasing element, made up of a pair of orthogonally I-shaped structures with an open square ring, is proposed and designed based on the extracted material characteristics. Both phase compensation and polarization conversion can be realized by the proposed unit cell. A reflectarray is designed by using the proposed phasing element with the conventional array synthesizing theory, and a THz grid polarizer is designed with strips on a 0.127 mm Taconic TLY-5 substrate. The THz grid is placed in front of the THz feed and the reflectarray, which is fully reflective to the feed and transparent to the reflectarray. All components of the FRA antenna have been fabricated and assembled. Experiments show that the FRA prototype has a peak gain of 33.66 dBi at 400 GHz with an aperture efficiency of 33.65%, and a 3-dB gain bandwidth of 16% (357-421 GHz).
机译:在高速太赫兹(THz)无线系统中,尤其对于空间有限的应用(例如高密度无线通信基站内部的高速互连链路),非常需要紧凑的高增益天线。为此,本文提出了一种具有高增益,高孔径效率和紧凑外形的400 GHz折叠反射阵列(FRA)天线。它由一个馈源,一个在石英上使用光刻工艺的单层反射阵列以及一个由印刷电路板技术实现的线栅偏振器组成。使用3-D打印的夹具将所有零件组装在一起。为了准确地设计所建议的天线,使用THz时域光谱仪系统提取了支持介电材料的THz电磁特性。然后,根据提取的材料特性,提出并设计了由一对正交的I形结构和一个开方的正方形环组成的单层定相元件。所提出的单位单元可以实现相位补偿和极化转换。通过使用建议的定相元件和常规阵列合成理论设计反射阵列,并在0.127 mm Taconic TLY-5基板上设计带状的THz光栅偏振器。太赫兹网格放置在太赫兹馈源和反射阵列的前面,它对馈源完全反射,对反射阵列透明。 FRA天线的所有组件均已制造和组装。实验表明,FRA原型在400 GHz时具有33.66 dBi的峰值增益,孔径效率为33.65%,而3-dB增益带宽为16%(357-421 GHz)。

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