同心圆六边形星形阵列的特殊情况:设计与特点

G. T. E. Sanousi, F. Hirtenfelder, M. A. H. Abbas, R. Abd‐Alhameed, Xin-She Yang, T. Le, H. Nguyen
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引用次数: 1

摘要

本文提出了一种特殊的同轴圆形天线阵列(CCAA)设计方案,该天线阵列具有集成带内全双工(IBFD)接入的能力。CCAA部署为六边形星形阵列(HSA)几何形状。该设计引入了虚拟天线编队,每个天线编队由放置在CCAA中心轴向相对两侧的至少两个抵消元件组成。HSA的几何结构提供相移,抵消了该中心的自信号,从而使其能够作为IBFD接收点。CCAA提供了出色的波束形成能力,IBFD中心提供了获取连续瞬时信道状态信息流(CSI)的潜力。CSI提高了CCAA的性能。提出的HSA由两个共振频率为2.44GHz的矩形单极片CAA环组成。采用达索电磁场仿真(CST)模拟器对设计进行了仿真。有效地证明了CCAA波束形成能力和IBFD消零能力的结合。阵列的分集和复用增益也得到了证明,即阵列具有多输入多输出的IBFD (MIMO-IBFD)性能。测量到的自干扰抵消(SIC)值为-30.8dB,仅在前端天线接口实现,无需将SIC集成到其他系统模块中,是一个实用的单级图。
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The Peculiar Case of the Concentric Circular Hexagonal-Star Array: Design and Features
This paper proposes a peculiar concentric circular antenna array (CCAA) design with ability to incorporate in band full duplex (IBFD) access. The CCAA is deployed as a hexagonal star array (HSA) geometry. The design introduces virtual antenna formations, each consisting of at least two cancelling elements placed on axially opposite sides of a CCAA centre. The geometry of the HSA provides phase shifts which cancel out the self-signals at this centre, thus enabling it to function as an IBFD receiving point. While CCAA provides excellent beam-forming abilities, the IBFD centre provides the potential for acquiring a continuous instantaneous stream of channel state information (CSI). The CSI enhances the CCAA performance. The proposed HSA consists of two CAA rings of rectangular monopole patches resonating at 2.44GHz. The design was simulated using the Dassault electromagnetic field simulation (CST) simulator. The combination of the CCAA beam-forming abilities and the IBFD nulling were effectively demonstrated. The array diversity and multiplexing gains were also demonstrated, i.e., the array exhibits a multi input multi output with IBFD (MIMO-IBFD) performance. The measured self-interference cancellation (SIC) figure was -30.8dB, achieved at only the front-end antenna interface without integrating the SIC in other system blocks, which is a practical one stage figure.
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