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Integration of Advanced LTE Technology and MIMO Network Based on Adaptive Multi-beam Antennas

机译:基于自适应多波束天线的先进LTE技术与MIMO网络的集成

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In this work, we put a question on integration of the advanced LTE technology and multiple-input multiple-output (MIMO) system for multi-user (MU) multiple access deployment. We analyze such an integrated network based on multi-beam adaptive antennas application for the purposes of increase of spectral efficiency of such a network, rejection of inter-symbol and inter-user interference, as well as minimization of multiplicative noise effects, caused by multipath phenomena (e.g. fading phenomena), on information data sent to each subscriber located in the area of service of such an integrated network. Based on the framework of multi-parametric stochastic approach described "reaction" (or response) of each specific terrain channel, rural, sub-urban, and urban, it is shown that such a combination of LTE technology and MU-MIMO system, based on multi-beam adaptive antennas, can significantly increase capacity and spectral efficiency of each channel, and finally, for a whole system, during the multiple access deployment, as well as can fully mitigate multiplicative noises occurring in terrestrial built-up environments. The corresponding computer experiments and real measurements carried out for specific urban scenarios are presented to proof the proposed approach.
机译:在这项工作中,我们对用于多用户(MU)多址部署的高级LTE技术和多输入多输出(MIMO)系统的集成提出了一个问题。为了提高这种网络的频谱效率,抑制符号间和用户间干扰以及最小化多径引起的乘法噪声效应,我们分析了基于多波束自适应天线应用的集成网络。发送到位于这种集成网络服务区域中的每个用户的信息数据上的现象(例如,衰落现象)。基于描述每个特定地形通道,农村,郊区和城市的“反应”(或响应)的多参数随机方法的框架,表明了LTE技术和MU-MIMO系统的这种结合,在多波束自适应天线上,可以显着提高每个信道的容量和频谱效率,最后,对于整个系统,在多址部署期间,还可以完全缓解在地面建筑物环境中发生的倍增噪声。提出了针对特定城市场景的相应计算机实验和实际测量结果,以证明所提出的方法。

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