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Spectral Efficiency Analysis of Distributed Antenna Systems for In-Building Mobile Communication

机译:内置移动通信中分布式天线系统的频谱效率分析

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In wireless systems, providing high data rate wireless services is a major challenge particularly in high building environments. The system performance is impaired by co-channel interference due to the need to reuse the limited available spectrum. In this environment, distributed antenna systems (DASs) can provide adequate coverage and high speed data services in the presence of multipath fading and co-channel interference by optimally combining the same signal from several antennas. This paper proposes and investigates the impacts of DAS for uplink transmission in high-rise buildings; where remote antenna units (RAUs) are deployed on each floor to reduce the radio transmission distance while at the same time exploiting spatial diversity. The RAUs are connected to a central unit (CU) where received signals are processed. The performance of the system is analysed in terms of achievable spectral efficiency using a propagation channel model derived from multi-floor in-building path loss values retrieved from measurement data. This model accounts for the propagation between different floors and ceilings and includes possible reflections from surrounding buildings. The effects of different numbers of receive antennas per floor and deployment conditions are investigated. Numerical results obtained suggest that the proposed scheme can facilitate better use of the available radio spectrum and provide higher data rates for indoor mobile terminals (MTs).
机译:在无线系统中,尤其在高层建筑环境中,提供高数据速率无线服务是一项重大挑战。由于需要重新使用有限的可用频谱,因此同频道干扰会削弱系统性能。在这种环境下,分布式天线系统(DAS)通过最佳组合来自多个天线的同一信号,可以在存在多径衰落和同信道干扰的情况下提供足够的覆盖范围和高速数据服务。本文提出并研究了DAS对高层建筑中上行链路传输的影响。在每个楼层部署远程天线单元(RAU)的目的是减少无线电传输距离,同时利用空间分集。 RAU连接到中央单元(CU),在此处理接收到的信号。使用从测量数据中检索到的多层楼内室内路径损耗值得出的传播通道模型,根据可达到的频谱效率来分析系统的性能。该模型说明了不同地板和天花板之间的传播,并包括了周围建筑物的可能反射。研究了每个楼层不同数量的接收天线和部署条件的影响。获得的数值结果表明,所提出的方案可以促进更好地利用可用的无线电频谱,并为室内移动终端(MT)提供更高的数据速率。

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