Sub - 6ghz频段下5G智能手机应用的10端口和14端口MIMO阵列

Ibrahim Zewail, T. Abouelnaga, M. Shokair
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引用次数: 1

摘要

本文针对第五代(5G)手机应用,提出了10端口和14端口大规模多输入多输出(MIMO)阵列的两种设计。提出了覆盖LTE频段42 (3.4 ~ 3.6 GHz)、LTE频段43 (3.6 ~ 3.8 GHz)和LTE频段46 (5.15 ~ 5.925 GHz)的双频环形天线。所提出的阵列通过改变电池位置和利用空间增加更多天线来设计。此外,在天线组件上使用空间分集方法可以实现更好的隔离。为了实现更高的隔离,将环形天线元件印刷在具有不同取向角的分离的十二角形FR4基板上形成基板。所提出的设计实现了优于-26 dB的隔离。基于s参数的包络相关系数(ECC)优于LTE 42/43频段的0.005和LTE 46频段的0.006。此外,基于远场辐射模式计算的ECC在LTE 42/43频段小于0.2,在LTE 46频段小于0.12。信道容量达到10 × 10 MIMO达到57.6 bps/Hz, 14 × 14 MIMO达到72 bps/Hz。此外,还讨论了比吸收率(SAR)、分集增益(DG)和帧插入对所提阵列的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ten Port and Fourteen Port MIMO Arrays for 5G Smart Phone Applications in a Sub 6 GHz band
— In this paper, two designs of ten port and fourteen port Massive Multiple-Input–Multiple-Output (MIMO) arrays are proposed for the Fifth Generation (5G) cellphone applications. A dual-band ring loop antenna is proposed to cover the LTE band 42 (3.4 – 3.6 GHz), LTE band 43 (3.6 – 3.8 GHz), and LTE band 46 (5.15 – 5.925 GHz). The proposed arrays are designed with changing the battery position and exploiting the space to add more antennas. Also, better isolation may be achieved concerning the use of spatial diversity methods on the antenna components. To achieve higher isolation, the substrate is formed as the loop antenna elements are printed on a separated dodecagon FR4 substrate with different orientation angles. The proposed designs achieve isolation better than -26 dB. Envelope Correlation Coefficient (ECC) based on S-parameters is found to be better than 0.005 in LTE band 42/43 and 0.006 in LTE band 46. Also, the ECC is calculated based on far-field radiation patterns and is found to be less than 0.2 in LTE band 42/43 and less than 0.12 in LTE band 46. The channel capacities are attained, the 10 × 10 MIMO achieve 57.6 bps/Hz, and the 14 × 14 MIMO achieve 72 bps/Hz. Additionally, The Specific Absorption Rate (SAR), Diversity Gain (DG), and the effect of frame insertion on the proposed array are also discussed.
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