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The Effect of Antenna Deployment in Outdoor to Indoor MIMO Measurements at 5.25 GHz

机译:天线部署在5.25 GHz的室外MIMO测量中的影响

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In this paper the results of outdoor to indoor multiple-input multiple-output (MIMO) measurement study at 5.25 GHz with 100 MHz bandwidth are presented. The effect of the antenna deployment to the measured radio channel characteristics is investigated. Especially a conventional nontilted microcell case versus a tilted microcell case sets an interesting study scenario. It is obvious that the actual antenna deployment has a strong impact on indoor coverage from an outdoor base station. Thus it is a very interesting topic in the development of future wireless networks. Comparative measurements with different antenna deployments are needed to identify potentially the best antenna constellation, e.g. in terms of the best possible link performance. Important characteristics such as path loss are studied to compare different antenna schemes. In the MIMO measurements, 32×18 radio channels were recorded for each channel sample using the Propsound Channel Sounder. The transmitter was located outside at the height of 16 meters (tilted microcell) and 6 meters (nontilted microcell) while the receiver was moving indoors with the antenna height of 1.50 meters. Dual-polarized antennas were employed at both ends. The results show no remarkable differences in the delay spread but the angular properties in the base station were quite different when changing the antenna deployment and e.g. the fractal for 50% for the azimuth spread of the base station was double for the nontilted case than it was for the tilted case.
机译:本文在5.25GHz的室外多输入多输出(MIMO)测量研究的户外伴随着100 MHz带宽的结果。研究了天线部署对测量的无线电信道特性的影响。特别是传统的Nontivered Microcell案例与倾斜的微小区外壳设置了一个有趣的研究场景。显而易见的是,实际的天线部署对户外基站的室内覆盖产生了强烈影响。因此,在未来的无线网络的发展中是一个非常有趣的话题。需要使用不同天线部署的比较测量来识别潜在的天线星座,例如最佳的天线星座。就最佳链接性能而言。研究了路径损耗等重要特征以比较不同的天线方案。在MIMO测量中,使用PROCSound信道发声器记录每个通道样本的32×18无线电通道。发射器位于16米(倾斜的Microcell)和6米(Nontivered Microcell)的外部,而接收器在室内移动,天线高度为1.50米。两端采用双极化天线。结果显示在延迟扩展中没有显着差异,但在改变天线部署时,基站的角度差异很大。对于倾斜情况而言,基站的方位传播的分形为50%,对于非倾斜的情况,基站的方位传播是双倍的。

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