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On Cross Correlation in Antenna Arrays With Applications to Spatial Diversity and MIMO Systems

机译:天线阵列的互相关及其在空间分集和MIMO系统中的应用

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摘要

We develop a general approach to cross correlation in antenna systems suitable for applications to spatial diversity and MIMO systems. The far-field correlation is expressed in terms of the currents on the antennas. The basic strategy proposed here is to perform the overall evaluation of cross correlation by means of superposition integrals involving contributions emerging from all possible mutual correlations between the point sources on the antenna currents where interactions are mediated by a new cross-correlation Green’s function. The method is verified and demonstrated in several numerical examples and a design methodology aiming at maximizing the diversity gain is outlined and illustrated. It is also shown that arbitrary antenna arrays can be reduced to suitable models involving only infinitesimal dipoles, in effect enabling us to compute the total diversity gain using the cross-correlation Green’s function. The formulation provided here gives the electromagnetic aspect of spatial diversity an articulated form proper for design and development of practical communication links using multiple antenna systems.
机译:我们开发了一种适用于空间分集和MIMO系统的天线系统中互相关的通用方法。远场相关性用天线上的电流表示。这里提出的基本策略是通过叠加积分来进行互相关的整体评估,该叠加涉及涉及天线电流上的点源之间所有可能的互相关所产生的贡献,其中相互作用是由新的互相关格林函数进行介导的。在几个数值示例中对该方法进行了验证和演示,并概述和说明了旨在最大化分集增益的设计方法。还表明,可以将任意天线阵列简化为仅包含无限小偶极子的合适模型,实际上使我们能够使用互相关格林函数来计算总分集增益。此处提供的公式为空间分集的电磁方面提供了一种适用于使用多个天线系统设计和开发实际通信链路的铰接形式。

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