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24-Port and 36-Port Antenna Cubes Suitable for MIMO Wireless Communications

机译:适用于MIMO无线通信的24端口和36端口天线立方体

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We describe 24-port and 36-port antennas based on a cube structure. The antennas are formed by densely packing individual antennas onto a cube. The 24-port antenna cube has a volume of 0.72 $lambda_{rm o}^{3}$ while the 36-port antenna has a volume of 1.13 $lambda_{rm o}^{3}$ . Even though the individual antennas are densely packed, most combinations of mutual couplings between ports exhibit better than $-$20 dB isolation. The basic 24-port cube antenna is formed by utilizing cross polarized quarter-wave slots at the cube edges. This provides polarization diversity on every edge of the cube, and both spatial and polarization diversities on the entire structure, leading to good isolation. Additionally 6 pairs of half-wave slot antennas are placed on each surface of the cube to provide 12 extra ports and therefore form our 36-port antenna. The cube antennas are made from FR-4 printed-circuit-boards (PCB), which is low-cost and allows ease of prototyping. The proposed cubes are investigated by simulation and measurement. One potential application for the cube antennas is in multiple-input-multiple-output (MIMO) wireless communication systems. The expected channel capacity of the 36-port cube with both mutual coupling and channel correlation considered is between 131–159 b/s/Hz at an SNR of 20 dB per receiver branch (compared to an ideal channel capacity of 197 b/s/Hz) when MIMO channels in a rich scattering environment with sufficient multipath are available.
机译:我们描述基于立方体结构的24端口和36端口天线。天线是通过将各个天线密集地包装在一个立方体上而形成的。 24端口天线立方体的体积为0.72 $ lambda_ {rm o} ^ {3} $,而36端口天线立方体的体积为1.13 $ lambda_ {rm o} ^ {3} $。即使单独的天线密集排列,端口之间相互耦合的大多数组合仍显示出优于$ -20 dB的隔离度。基本的24端口立方体天线是通过在立方体边缘使用交叉极化的四分之一波长缝隙形成的。这样可以在立方体的每个边缘上提供极化分集,并在整个结构上提供空间和极化分集,从而实现良好的隔离。另外,在立方体的每个表面上都放置了6对半波缝隙天线,以提供12个额外的端口,因此构成了我们的36端口天线。立方天线由FR-4印刷电路板(PCB)制成,成本低廉,易于原型制作。通过仿真和测量研究了提出的立方体。立方天线的一种潜在应用是在多输入多输出(MIMO)无线通信系统中。在每个接收器分支的SNR为20 dB的情况下,考虑了相互耦合和信道相关性的36端口立方体的预期信道容量在131–159 b / s / Hz之间(相比理想信道容量为197 b / s /当在具有足够多径的丰富散射环境中使用MIMO信道时,可以使用。

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