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Experimental studies of spatial signature variation at 900 MHz for smart antenna systems

机译:智能天线系统在900 MHz时的空间特征变化的实验研究

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摘要

A spatial signature is the response vector of a base-station antenna array to a mobile unit at a certain location. Mobile subscribers at different locations exhibit different spatial signatures. The exploitation of spatial diversity (or the difference of spatial signatures) is the basic idea behind the so-called space-division multiple-access (SDMA) scheme, which can be used to significantly increase the channel capacity and quality of a wireless communication system. Although SDMA schemes have been studied by a number of researchers, most of these studies are based on theoretical analyses and computer simulations with ideal assumptions. Not much experimental study, has been reported on spatial signature variation due to nonideal perturbations in a real wireless communication environment. The purpose of this paper is to present, for the first time, extensive experimental results of spatial signature variation using a smart antenna testbed. The results presented include the spatial signature variation with time, frequency, small displacement, multipath angle spread and beamforming performance. The experimental results show the rich spatial diversity and potential benefits of using an antenna array for wireless communication applications.
机译:空间签名是基站天线阵列对特定位置的移动单元的响应矢量。不同位置的移动订户表现出不同的空间特征。利用空间分集(或空间特征的差异)是所谓的空分多址(SDMA)方案背后的基本思想,该方案可用于显着提高无线通信系统的信道容量和质量。尽管许多研究人员已经研究了SDMA方案,但是这些研究大多数基于理论分析和具有理想假设的计算机模拟。由于真实无线通信环境中由于非理想扰动而引起的空间特征变化的实验研究报道较少。本文的目的是首次展示使用智能天线测试台的空间特征变化的广泛实验结果。提出的结果包括随时间,频率,小位移,多径角度扩展和波束成形性能的空间特征变化。实验结果表明,将天线阵列用于无线通信应用具有丰富的空间多样性和潜在优势。

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