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A Systematic Study of MIMO-OFDM Broadband Channels in Populated Indoor Environment

机译:室内人口环境中MIMO-OFDM宽带信道的系统研究

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This paper presents a systematic study of input and multiple-output orthogonal frequency division multiplexing (MIMO-OFDM) systems behavior in an indoor environment in the presence of deterministic and random human movement between transmitter and receiver array. The in-house built MIMO-OFDM packet transmission demonstrator, equipped with four transmitters and four receivers, has been utilized to perform channel measurements at 5.2 GHz. Measurements have been performed using 0-3 pedestrians with different antenna arrays (2 x 2,3 x 3 and 4 x 4). Regular significant temporal variation has been observed for random scenarios compared to the deterministic scenarios. An incremental trend in average channel capacity for both deterministic and random pedestrian movements has been observed as a function of the number of the pedestrian and antennas. The 90% dynamic range analysis also reserved the incremental affinity with the increasing number of pedestrian and antenna combinations.
机译:本文介绍了在发射机和接收机阵列之间存在确定性和随机人类运动的情况下,在室内环境中输入和多输出正交频分复用(MIMO-OFDM)系统行为的系统研究。内部配备的MIMO-OFDM分组传输演示器配备了四个发射器和四个接收器,已被用于执行5.2 GHz的信道测量。使用具有不同天线阵列(2 x 2,3 x 3和4 x 4)的0-3位行人进行了测量。与确定性方案相比,随机方案已观察到有规律的时间变化。已经观察到确定性和随机行人运动的平均信道容量的增加趋势是行人和天线数量的函数。 90%的动态范围分析还保留了随着行人和天线组合数量的增加而增加的亲和力。

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