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Effect of antenna polarization on the capacity of a multiple element system in an indoor environment

机译:天线极化对室内环境中多元素系统容量的影响

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We analyze the behavior of a multiple element antenna system in an indoor environment based on the measurements taken in the Lucent Bell Labs building in Crawford Hill, NJ, with a system of 12 transmitters and 15 receivers. In particular, we investigate the capacity behavior with respect to the polarization of the transmitting/receiving elements and the distance between the transmitting and the receiving arrays. The analysis of the power rolloff versus distance clearly demonstrates the different propagation characteristics of the horizontally versus the vertically polarized electric fields. Under strong line-of-sight (LOS) conditions (hallway environment), the power of the horizontally polarized waves falls off faster with distance than that of the vertically polarized fields. Also, the cross-polarization coupling is about -15 dB. Under nonline-of-sight (NLOS) conditions (labs), both polarizations display similar rolloff behavior with distance and the cross-polarization coupling is about 0 dB. There is a power loss of at least 15 dB under NLOS conditions relative to LOS conditions. The average received signal power affects the system capacity. In the hallway, horizontally polarized systems achieve lower capacities than their vertically polarized counterparts. Also the achievable capacity in the labs is much lower than that in the hallway, because of the lower average received power. The comparison of single polarization systems to hybrid polarization systems shows that combined polarization systems perform better in terms of achievable capacity. Therefore, there lies an advantage in using both electric field polarizations. However, under strong LOS conditions the channel itself inherently limits the capacity behavior of the system.
机译:我们根据Crawford Hill,NJ朗讯贝尔实验室建筑的测量分析了多元素天线系统在室内环境中的行为,其中12个发射器和15个接收器系统。特别地,我们研究了关于发送/接收元件的偏振的容量行为以及发送和接收阵列之间的距离。电力滚动与距离的分析清楚地展示了水平与垂直偏振电场的不同传播特性。在强大的视线(LOS)条件下(走廊环境),水平极化波的功率距离比垂直偏振的田径更快。而且,交叉偏振耦合约为-15dB。在非视线(NLOS)条件(实验室)下,两极化显示出具有距离的类似升辊行为,并且交叉偏振耦合约为0 dB。在NLOS条件下,相对于LOS条件,在NLOS条件下存在至少15 dB的功率损失。平均接收信号功率会影响系统容量。在走廊中,水平极化系统比其垂直偏振的对应物达到更低的容量。而且,实验室中可实现的能力远低于走廊,因为平均值较低。单偏振系统与混合偏振系统的比较表明,组合极化系统在可实现的容量方面表现更好。因此,在使用电场偏振中存在优点。但是,在强大的LOS条件下,通道本身本身固有地限制了系统的容量行为。

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