Spatial Capacity Estimation for Correlated MIMO Channels Based on Measured SISO Data Records

A. Knopp, C. Hofmann, R. Schwarz, M. Chouayakh, B. Lankl
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引用次数: 1

Abstract

A novel strategy of precalculating potential MIMO spectral efficiencies of correlated channels based on single, measured or appropriately modeled SISO impulse responses is presented. Additionally, the model is capable of comprising the physical nature of the channel in form of its frequency response. The method is applied to indoor MIMO channels where the correlation is introduced by a strong Line-Of-Sight signal component as well as low mobility. It is verified by simulation as well as based on results from measurements which were derived using a fast MIMO radio channel sounder. A spherical wave model is applied and the distributions of angle of arrival and angle of departure turn out to be important modeling parameters. Consequentially, earlier results on the impact of the antenna arrangement on the MIMO spectral efficiency are supported for the observed, short-range channels. The presented strategy is especially viable to utilize and extend available data records from SISO measurement campaigns to the MIMO case, where the focus lies on the prediction of spatial MIMO spectral efficiencies.
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基于实测SISO数据记录的相关MIMO信道空间容量估计
提出了一种基于单个、测量或适当建模的SISO脉冲响应预计算相关信道潜在MIMO频谱效率的新策略。此外,该模型能够以其频率响应的形式包含信道的物理性质。该方法适用于室内MIMO信道,其中相关性由强视距信号分量和低移动性引入。通过仿真和基于快速MIMO无线电信道测深仪的测量结果进行了验证。采用球面波模型,发现到达角和离开角的分布是重要的建模参数。因此,先前关于天线布置对MIMO频谱效率影响的结果支持了观察到的短距离信道。所提出的策略特别适用于利用和扩展从SISO测量活动到MIMO案例的可用数据记录,其中重点在于预测空间MIMO频谱效率。
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