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Simulation of MIMO channel capacity with antenna polarization diversity

机译:具有天线极化分集的MIMO信道容量仿真

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摘要

A simulation study of the channel capacity of a multiple-input multiple-output (MIMO) antenna system exploiting multiple polarizations is carried out. We focus on a simple yet realistic trimonopole antenna structure, taking into account all the mutual coupling and casing effects using the computational electromagnetics solver-numerical electromagnetics code. Simulation results show that, with a special transmit geometry, using the collocated trimonopole antennas at a size-constrained receiver can offer channel capacity that approaches the capacity of an uncorrelated MIMO Rayleigh channel. In addition, it is shown that the capacity increase is mainly attributed to polarization diversity instead of pattern diversity. Furthermore, we find that the mutual coupling and casing effects in the trimonopole system can actually provide a large capacity increase with less constraint on the antenna configurations than the idealized tridipole system.
机译:对利用多极化的多输入多输出(MIMO)天线系统的信道容量进行了仿真研究。我们将重点放在一个简单而现实的三单极天线结构上,并考虑使用计算电磁学求解器-数值电磁代码的所有相互耦合和套管效应。仿真结果表明,在特殊的发射几何条件下,在尺寸受限制的接收机上使用并置的三单极天线可以提供接近不相关MIMO瑞利信道容量的信道容量。另外,表明容量增加主要归因于极化分集而不是图案分集。此外,我们发现,与理想的三偶极子系统相比,三单极子系统中的互耦和套管效应实际上可以在不限制天线配置的情况下提供大的容量增加。

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