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In-Building DAS for High Data Rate Indoor Mobile Communication

机译:建立高数据速率室内移动通信的DAS

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As well known, providing high data rate wireless mobile services is difficult in indoor environments, particularly in multi-floor buildings. One way to achieve high data rate wireless transmissions is to reduce the radio transmission distance between the transmitter and the receiver by using distributed antenna systems (DASs) employing frequency reuse. However, frequency reuse causes co-channel interference, which is detrimental to system performance. In this paper, the impact of cochannel interference on the achievable uplink spectral efficiency of an in-building wireless communication system employing DAS is examined. In the system, remote antenna units (RAUs) are deployed on each floor throughout the building and connected to a central unit (CU) where received signals are processed. System performance is investigated by using a propagation channel model derived from multi-floor, in-building measurement results. The proposed scheme exploits the penetration loss of the signal through the floors, resulting in frequency reuse in spatially separated floors, which increases system spectral efficiency and also reduces co-channel interference. Location based RAU selection and deployment options are investigated. System performance is evaluated in terms of location-specific spectral efficiency for a range of potential mobile terminal (MT) locations and various in-building propagation characteristics.
机译:众所周知,在室内环境中难以提供高数据速率无线移动服务,特别是在多层建筑物中。实现高数据速率无线传输的一种方法是通过使用采用频率重用的分布式天线系统(DASS)来降低发射器和接收器之间的无线电传输距离。然而,频率再利用会导致共信道干扰,这是有害的系统性能。本文研究了Cochannel干扰对采用DAS的建立无线通信系统可实现的上行链路谱效率的影响。在系统中,远程天线单元(RAU)在整个建筑物的每个楼层上部署并连接到处理接收信号的中央单元(CU)。通过使用从多层,建立的测量结果导出的传播信道模型来研究系统性能。所提出的方案利用信号通过地板进行穿透损失,从而导致空间分离的楼层中的频率再利用,这增加了系统谱效率,并且还降低了共信道干扰。基于位置的RAU选择和部署选项进行了调查。在潜在的移动终端(MT)位置和各种建立传播特性的位置特定的频谱效率方面评估系统性能。

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