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Empirical Rates Characterization of Wearable Multi-Antenna Terminals for First-Responders

机译:首次响应者可穿戴多天线终端的经验速率表征

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摘要

Empirical characterization of the achievable rates for a wearable multi-antenna terminal shows the potential advantages of deploying a large number of antennas at the user end. We focus on the challenges and requirements of the broadband communication in future emergency communication systems, specifically addressing the outdoor–to–indoor propagation scenario, where the first responder is within an underground area such as a garage or basement. The measurement campaign undertaken characterizes the flat fading multiple-input multiple-output (MIMO) channel matrices at 3.5 GHz for a maximum of $M=30$ antennas deployed at the base station (BS), and $N=12$ wearable antennas at the user. The achievable rates are obtained for two transmission strategies that account for the different levels of channel knowledge. In both cases, all the MIMO processing is carried out at the BS.
机译:可穿戴多天线终端可实现的速率的经验表征显示在用户端部署大量天线的潜在优点。我们专注于未来紧急通信系统中宽带通信的挑战和要求,特别是解决室外到室内传播场景,其中第一个响应者在地下区域,如车库或地下室。所承诺的测量活动表征了3.5 GHz的扁平衰落多输入多输出(MIMO)通道矩阵,最多$ M = 30 $ 30 $ 5 $ Antennas在基站(BS),而N = 12美元可穿戴天线用户。可实现的速率是针对不同渠道知识级别的两个传输策略获得的。在这两种情况下,所有MIMO处理都在BS进行。

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