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Assessment of LTCC-Based Dielectric Flat Lens Antennas and Switched-Beam Arrays for Future 5G Millimeter-Wave Communication Systems

机译:基于LTCC的介电平板透镜天线和转换波束阵列的评估,用于未来5G毫米波通信系统

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This paper presents the design, low-temperature co-fired ceramics (LTCC) fabrication, and full experimental verification of novel dielectric flat lens antennas for future high data rate 5G wireless communication systems in the 60 GHz band. We introduce and practically completely evaluate and compare the performance of three different inhomogeneous gradient-index dielectric lenses with the effective parameters circularly and cylindrically distributed. These lenses, despite their planar profile antenna configuration, allow full 2-D beam scanning of high-gain radiation beams. A time-domain spectroscopy system is used to practically evaluate the permittivity profile achieved with the LTCC manufacturing process, obtaining very good results to confirm the viability of fabricating inhomogeneous flat lenses in a mass production technology. Then, the lenses performance is evaluated in terms of radiation pattern parameters, maximum gain, beam scanning, bandwidth performance, efficiencies, and impedance matching in the whole frequency band of interest. Finally, the performance of the three lenses is also experimentally evaluated and compared to a single omni-directional antenna and to a ten-element uniform linear array of omni-directional antennas in real 60 GHz wireless personal area network indoor line-of-sight (LOS) and obstructed-LOS environments, obtaining interesting and promising remarkable results in terms of measured received power and root-mean-square delay spread. At the end of this paper, an innovative switched-beam antenna array concept based on the presented cylindrically distributed effective parameters lens is also introduced and completely evaluated, confirming the potential applicability of the proposed antenna solution for future 5G wireless millimeter-wave communication system.
机译:本文介绍了用于60 GHz频段未来高数据速率5G无线通信系统的新型介电平板透镜天线的设计,低温共烧陶瓷(LTCC)的制造以及完整的实验验证。我们介绍并实际上完全评估和比较了三种不同的非均匀梯度折射率介电透镜的性能,其有效参数呈圆形和圆柱形分布。这些透镜尽管具有平面轮廓天线配置,但仍可以对高增益辐射束进行全二维束扫描。时域光谱系统用于实际评估LTCC制造工艺所实现的介电常数分布,获得了非常好的结果,从而证实了在大规模生产技术中制造不均匀平板透镜的可行性。然后,根据辐射方向图参数,最大增益,光束扫描,带宽性能,效率和整个感兴趣频段的阻抗匹配来评估透镜性能。最后,还通过实验评估了这三个透镜的性能,并将它们与单个单向天线和十个单元的均匀线性阵列全向天线在真实的60 GHz无线个人区域网络室内视线( LOS)和受阻LOS环境,在测量接收功率和均方根时延扩展方面获得了有趣且有希望的显着结果。在本文的最后,还介绍了一种基于提出的圆柱分布有效参数透镜的创新的开关波束天线阵列概念,并对其进行了完整评估,从而确认了所提出的天线解决方案在未来5G无线毫米波通信系统中的潜在适用性。

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