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Wideband subarray design for 5G an antenna arrays

机译:5G天线阵列的宽带子阵列设计

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摘要

There is a global trend towards migrating to millimeter wave frequencies in the fifth generation of mobile communications (5G) to further enhance the available capacity and data rates. Antenna arrays are usually applied to overcome the innate high path loss at the millimeter wave (mmW) frequency band. Moreover, the use of subarrays decreases design complexity and system cost. The goal of this paper is to present a design of a wideband subarray at the frequency range from 28 GHz to 32 GHz, i.e. the frequency range applied for Local Multipoint Distribution Service (LMDS), to be used in the antenna array design of next generation mobile networks. The proposed subarray consists of four radiating elements of proximity coupled stacked patch antennas. The unit-cell is first designed, fabricated and tested, which confirms the wideband coverage along the required band. The proposed subarray achieves a simulated gain that ranges between 11.1 dB and 12 dB along the frequency band from 28 GHz to 32 GHz. The impedance bandwidth and the 1-dB gain bandwidth are 30% and 21.2%, respectively.
机译:在第五代移动通信(5G)中,存在向毫米波频率迁移的全球趋势,以进一步提高可用容量和数据速率。通常应用天线阵列来克服毫米波(mmW)频段固有的高路径损耗。此外,子阵列的使用降低了设计复杂度和系统成本。本文的目的是提出一种宽带子阵列的设计,其频率范围为28 GHz至32 GHz,即用于本地多点分配服务(LMDS)的频率范围,将用于下一代天线阵列设计中。手机网络。所提出的子阵列由邻近耦合的堆叠式贴片天线的四个辐射元件组成。首先对单元电池进行设计,制造和测试,这确定了所需频段的宽带覆盖范围。所提出的子阵列在28 GHz至32 GHz的频带上实现了介于11.1 dB和12 dB之间的模拟增益。阻抗带宽和1dB增益带宽分别为30%和21.2%。

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