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Spatial Correlation and MIMO Capacity at 2.4GHz

机译:2.4GHz的空间相关和MIMO容量

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摘要

Multiple-Input Multiple-Output (MIMO) systems are commonly used methods in order meet the increasing capacity need in wireless communication systems. However, the channel capacity in the multi-antenna architecture depends not only on signal-to-noise ratio (SNR) but also the spatial correlation between antenna elements. Therefore, detailed information is required about the transmission medium during the system design. We used the ray tracing method for the radio propagation channel modelling during this study. In multi-antenna systems, measurements were made for 0.02λ receiving antenna spacing in a laboratory consisting of a full anechoic room, and the spatial correlation between far-field signals was observed. We also examined the impact of correlation on the channel capacity in a 2 x 2 MIMO system. The test results showed high level of correlation between received signals in cases where one and two beams were effective as reflections even though the distance between the antennas was bigger than the wavelength. Furthermore, we observed that the channel capacity increased as the correlation between sub-channels increased.
机译:多输入多输出(MIMO)系统通常是使用的方法,以满足无线通信系统中的增加的容量需求。然而,多天线架构中的信道容量不仅取决于信噪比(SNR),而且取决于天线元件之间的空间相关性。因此,系统设计期间传输介质需要详细信息。我们在本研究期间使用了用于无线电传播信道建模的光线跟踪方法。在多天线系统中,在由完全放置室组成的实验室中,进行测量,在维护中,在维护中,观察到的实验室中的天线间距,并且观察到远场信号之间的空间相关性。我们还检查了2×2 MIMO系统中的相关性对信道容量的影响。测试结果表明,即使天线之间的距离大于波长,也显示出一个和两个光束作为反射的情况下的接收信号之间的相关信号之间的相关性高。此外,我们观察到,随着子信道之间的相关性增加,信道容量增加。

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