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Experimental Evaluation of the Performance of CoMP Systems for Closely-Located Users Including Users' Body Influence

机译:CoMP系统对近距离用户的影响(包括用户的身体影响)的实验评估

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Based on multi-link synchronous propagation measurements, we study the downlink performance of Coordinated Multi-point (CoMP) systems. The propagation measurements took place in an outdoor micro-cellular environment with two base stations (BSs) located 60 m apart, each equipped with two cross-polarized co-located antennas. We focus on the challenging case of having closely-located users with 0.5 m inter- user distance. We consider four virtual users, each equipped with two antennas, moving along various routes. The patterns of the users' antennas, including the user's body influence, are measured in static scenarios with an upper body phantom and a handset mockup in the LTE 2.5-2.7 GHz band. The users' composite channel matrices are constructed based on: 1) the propagation channel represented by the multipath components extracted from the propagation measurements and 2) the user- influenced antenna pattern. We first analyze the effect of the BS antenna polarization on the collinearity among the users' channel matrices. Then, we evaluate the effect of the BS antenna polarization on improving the system performance, where the performance is evaluated based on two criterion: the number of users that the system is able to serve in the same time-frequency resource, and the achievable sum-rate. It is found that using cross- polarized BS antenna improves the fairness and the sum-rate of the system. It is also found that, in contrast to the case of conventional co-located MIMO, the improvement gained by CoMP systems (with per-BS power control) from using cross-polarized BS antennas is mainly attributed to improving the multiplexing gain of the system while the system's effective power gain has insignificant contribution.
机译:基于多链路同步传播测量,我们研究了多点协作(CoMP)系统的下行链路性能。传播测量是在室外微蜂窝环境中进行的,其中两个基站(BS)相距60 m,每个基站都配备了两个交叉极化的共址天线。我们关注具有0.5 m用户间距离的紧密位置用户的具有挑战性的情况。我们考虑了四个虚拟用户,每个虚拟用户都配备了两个天线,它们沿着不同的路径移动。在静态场景中,使用上半身幻像和LTE 2.5-2.7 GHz频段的手机样机,测量用户的天线方向图,包括用户的身体影响。用户的复合信道矩阵的构建基于:1)由从传播测量中提取的多径分量表示的传播信道,以及2)用户影响的天线方向图。我们首先分析BS天线极化对用户信道矩阵之间共线性的影响。然后,我们评估BS天线极化对改善系统性能的影响,其中基于两个标准评估性能:系统在相同的时频资源中可以服务的用户数量,以及可达到的总和-速度。发现使用交叉极化的BS天线可以改善系统的公平性和总和率。还发现,与传统的共置MIMO的情况相比,CoMP系统(使用逐基站功率控制)通过使用交叉极化BS天线获得的改进主要归因于系统的多路复用增益的提高而系统的有效功率增益贡献不大。

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