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Design of a Wideband, Tunable Four-Port MIMO Antenna System With High Isolation Based on the Theory of Characteristic Modes

机译:基于特征模式理论的宽带可调谐高阻四端口MIMO天线系统设计

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Cognitive radio (CR) systems, which are intended for opportunistic spectrum access over a large portion of the mobile radio spectrum, require highly isolated and wideband multiport antennas. The subject of this paper is an approach for mapping characteristic modes (CMs) to radiation modes (RMs) to build a multiple-input multiple-output (MIMO) antenna system meeting the requirements of isolation and bandwidth (BW). A set of mutually orthogonal RMs of the antenna system is constructed from superpositions of CMs of the chassis of the device. By exploitation of orthogonality properties and permutation relations between the couplers due to symmetry, the complexity of the matching network (MN) and the number of tunable reactances are reduced. The approach is applied to the design of a four-port antenna system for a femto-cell form factor device operating in the [470, 790] MHz range. We proceed to the computation of the CMs of the device, the selection of most efficient ones, and their excitation with couplers whose locations respect the symmetry of the structure and of the current density distributions of the chosen modes. Theoretical considerations and simulations are compared against measured results for our hardware prototype.
机译:认知无线电(CR)系统旨在在很大一部分移动无线电频谱中进行机会频谱访问,需要高度隔离的宽带多端口天线。本文的主题是一种将特征模式(CM)映射到辐射模式(RM)的方法,以构建满足隔离和带宽(BW)要求的多输入多输出(MIMO)天线系统。天线系统的一组相互正交的RM由设备机架的CM的叠加构成。通过利用由于对称性而导致的耦合器之间的正交性和置换关系,可以降低匹配网络(MN)的复杂性和可调电抗的数量。该方法适用于工作在[470,790] MHz范围内的毫微微小区形状因子设备的四端口天线系统的设计。我们着手进行器件CM的计算,最有效的CM的选择及其耦合器的激励,耦合器的位置取决于结构的对称性和所选模式的电流密度分布。理论上的考虑和仿真与我们的硬件原型的测量结果进行了比较。

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