Performance of lens antennas in wireless indoor millimeter wave applications

C. Fernandes, J. Fernandes
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引用次数: 46

Abstract

Dielectric lens antennas can be designed to produce highly shaped beams that significantly improve the performance of emerging wireless indoor millimeter wave systems. A lens configuration is analyzed in this paper that produces a circular symmetric cell with uniform spatial distribution of power, with fairly sharp boundaries and scalable cell radius. The last characteristic is used to control the reflections at side walls. An hemispherical coverage lens antenna is designed for the mobile terminal to ensure relatively free movement. The impact of these antennas is analyzed in terms of cell coverage and channel time dispersion, considering the effect of cell radius scaling, and mobile terminal antenna tilting. Measurements and simulations show that the proposed lenses outperform common solutions based on pyramidal horns or biconics.
透镜天线在无线室内毫米波应用中的性能
介质透镜天线可以设计成产生高度成形的波束,从而显著提高新兴无线室内毫米波系统的性能。本文分析了一种透镜结构,它产生的圆形对称单元具有均匀的空间功率分布,具有相当清晰的边界和可扩展的单元半径。最后一个特性用于控制侧壁的反射。移动终端采用半球面覆盖透镜天线,保证移动相对自由。考虑小区半径缩放和移动终端天线倾斜的影响,从小区覆盖和信道时间色散两方面分析了这些天线的影响。测量和仿真表明,所提出的透镜优于基于锥体角或仿生学的常见解决方案。
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