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首页> 外文期刊>IEE Proceedings. Part H, Microwaves, Antennas and Propagation >Radiation efficiency, correlation, diversity gain and capacity of a six-monopole antenna array for a MIMO system: theory, simulation and measurement in reverberation chamber
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Radiation efficiency, correlation, diversity gain and capacity of a six-monopole antenna array for a MIMO system: theory, simulation and measurement in reverberation chamber

机译:MIMO系统的六单极天线阵列的辐射效率,相关性,分集增益和容量:混响室内的理论,仿真和测量

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摘要

A six-monopole circular antenna array for use in a MIMO system is considered. The authors show how to calculate the embedded element patterns, both by classical analytical modelling and by the method of moments. Thereafter, these are used to calculate the radiation efficiency of each embedded element, correlation and diversity gain, as well as the maximum average capacity of the MIMO system when the array is located in a rich scattering environment. The theoretical value for the capacity is obtained by numerically distributing many plane wave sources statistically uniformly over 4π, letting them illuminate the calculated embedded element pattern and using Shannon's capacity formula on the received wave amplitudes. The calculated results are compared with measurement in a reverberation chamber, representing a similar scattering environment. The agreement is good.
机译:考虑了在MIMO系统中使用的六单极圆形天线阵列。作者展示了如何通过经典的分析模型和矩量法来计算嵌入的元素模式。此后,这些参数用于计算每个嵌入式元素的辐射效率,相关性和分集增益,以及当阵列位于丰富的散射环境中时MIMO系统的最大平均容量。容量的理论值是通过在4π上对多个平面波源进行统计上均匀的数值分布而获得的,让它们照亮计算出的嵌入式元素模式,并在接收的波幅上使用Shannon的容量公式。将计算结果与代表相似散射环境的混响室中的测量结果进行比较。协议很好。

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