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Multiple-input-multiple-output measurements and modeling in Manhattan

机译:曼哈顿多输入多输出测量和建模

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Narrowband multiple-input-multiple-output (MIMO) measurements using 16 transmitters and 16 receivers at 2.11 GHz were carried out in Manhattan. High capacities were found for full, as well as smaller array configurations, all within 80% of the fully scattering channel capacity. Correlation model parameters are derived from data. Spatial MIMO channel capacity statistics are found to be well represented by the separate transmitter and receiver correlation matrices, with a median relative error in capacity of 3%, in contrast with the 18% median relative error observed by assuming the antennas to be uncorrelated. A reduced parameter model, consisting of 4 parameters, has been developed to statistically represent the channel correlation matrices. These correlation matrices are, in turn, used to generate H matrices with capacities that are consistent within a few percent of those measured in New York. The spatial channel model reported allows simulations of H matrices for arbitrary antenna configurations. These channel matrices may be used to test receiver algorithms in system performance studies. These results may also be used for antenna array design, as the decay of mobile antenna correlation with antenna separation has been reported here. An important finding for the base transmitter array was that the antennas were largely uncorrelated even at antenna separations as small as two wavelengths.
机译:在曼哈顿进行了使用16个发射机和16个接收器的窄带多输入多输出(MIMO)测量。找到高容量的全部,以及较小的阵列配置,全部在完全散射信道容量的8​​0%以内。相关模型参数源自数据。发现空间MIMO信道容量统计数据由单独的发射机和接收器相关矩阵提供良好的表示,其中位相对误差的容量为3%,相反,通过假设天线不相关观察到18%的中值相对误差。已经开发出由4个参数组成的减少参数模型,以统计地表示信道相关矩阵。这些相关矩阵又依次生成具有在纽约测量的百分之几的容量的H矩阵。空间通道模型报告允许对任意天线配置的H矩阵进行模拟。这些信道矩阵可用于测试系统性能研究中的接收算法。这些结果也可用于天线阵列设计,因为这里已经报道了与天线分离的移动天线相关的衰减。对于基础发射机阵列的重要发现是,即使在作为两个波长的天线分离处,天线也很大程度上是不相关的。

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