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首页> 外文期刊>International journal of antennas and propagation >MIMO Geometry and Antenna Design for High Capacity and Improved Coverage in mm-Wave Systems
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MIMO Geometry and Antenna Design for High Capacity and Improved Coverage in mm-Wave Systems

机译:MIMO几何和天线设计,可在毫米波系统中实现大容量并改善覆盖范围

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摘要

We show a way to optimize the capacity and at the same time achieve high coverage in LOS for a mm-wave system indoor. We optimize MIMO with regard to maximum Shannon capacity for a pure LOS channel. We describe the general procedure in order to maximize the capacity for our considered geometry, which consists of a circular arc array at the transmitter and a uniform linear array (ULA) at the receiver. The method is based on the optimization of the interelement distances at the transmitter and the receiver. High coverage is obtained with the use of the circular geometry and beamforming. We propose an example mm-wave system in the 70 GHz portion of the E-band (71–76) GHz. The results show that the proposed system is able to achieve full coverage in LOS as well as high capacity, with practical dimensions.
机译:对于室内毫米波系统,我们展示了一种优化容量并同时在LOS中实现高覆盖的方法。我们针对纯LOS信道的最大Shannon容量优化MIMO。我们描述了一般的过程,以使我们考虑的几何结构的容量最大化,该过程由发送器处的圆弧阵列和接收器处的均匀线性阵列(ULA)组成。该方法基于在发射器和接收器处的元素间距离的优化。使用圆形几何形状和波束成形可以获得高覆盖率。我们在E波段(71-76)GHz的70 GHz部分提出了毫米波系统的示例。结果表明,所提出的系统能够以实用的尺寸实现LOS的全面覆盖以及高容量。

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