Spatial cross-correlation of multilink propagation channels in amplify-and-forward relay systems

X. Yin
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引用次数: 4

Abstract

In this contribution, an analytical expression is derived for the correlation matrix of the multiple-input multiple-output (MIMO) propagation channel for the amplify-and-forward relay transmission systems. In order to understand the cross-correlation mechanism, we derive the spatial correlation of two arbitrary channels between the source and the destination via relay stations in terms of the direction-delay spread functions of the links. The results show that the coherent components that exist in the channels between the source and the relay stations and in the channels between the destination and the relay stations lead to the non-zero cross-correlation among the links. Channel measurement results in two indoor environments are used to illustrate the existence of cross-correlation among the channels with the link ends located in different environments. These observations together with the theoretical work indicate that it is possible to use the geometry-based approaches that take into account the properties of the propagation environments to model the spatial correlation matrix of the multi-link MIMO channels.
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放大转发中继系统中多链路传播信道的空间互相关
本文推导了放大转发中继传输系统中多输入多输出(MIMO)传播信道相关矩阵的解析表达式。为了理解相互关联机制,我们根据链路的方向延迟扩展函数推导了经过中继站的源和目的之间任意两个信道的空间相关性。结果表明,源和中继站之间的信道以及目的和中继站之间的信道中存在相干分量,导致链路之间存在非零互相关。利用两种室内环境下的信道测量结果,说明链路端位于不同环境下的信道之间存在互相关。这些观测结果和理论工作表明,考虑到传播环境的特性,可以使用基于几何的方法来模拟多链路MIMO信道的空间相关矩阵。
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