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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Performance of multi-antenna signaling strategies using dual-polarized antennas: measurement results and analysis
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Performance of multi-antenna signaling strategies using dual-polarized antennas: measurement results and analysis

机译:使用双极化天线的多天线信令策略的性能:测量结果和分析

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摘要

Multiple-input multiple-output (MIMO) wireless systems employ spatial multiplexing to increase spectral efficiency or transmit diversity (space-time coding) techniques to improve link reliability. The performance of these signaling techniques is highly dependent on channel characteristics which in turn depend on antenna height and spacing and richness of scattering. The use of dual-polarized antennas is a cost- and space-effective alternative where two spatially separated uni-polarized antennas can be replaced by a single dual-polarized antenna element. In this paper, we use fixed-wireless experimental data collected in a typical suburban environment at 2.5 GHz to investigate the performance of spatial multiplexing and transmit diversity (Alamouti scheme) for a dual-polarized antenna setup. Channel measurements were conducted over a cell of radius 7 km and channel statistics such as K-factor, cross-polarization discrimination (XPD), and fading signal correlation were extracted from the gathered data. At each location, different combinations of these parameters yield different performance (measured in terms of average uncoded bit error rate) of spatial multiplexing and the Alamouti scheme. The results indicate that proper selection of the transmission mode through feedback, if possible, can reduce the bit error rate by several orders of magnitude. Furthermore, the results hint at the existence of a preferred-mode switching distance within a cell above/below which one mode of transmission exhibits generally superior performance.
机译:多输入多输出(MIMO)无线系统采用空间复用来提高频谱效率,或者采用传输分集(时空编码)技术来提高链路可靠性。这些信令技术的性能高度依赖于信道特性,而信道特性又取决于天线的高度,间隔和散射的丰富度。使用双极化天线是一种节省成本和空间的替代方案,其中两个空间上分离的单极化天线可以用单个双极化天线元件代替。在本文中,我们使用在2.5 GHz的典型郊区环境中收集的固定无线实验数据来研究双极化天线设置的空间复用和发射分集(Alamouti方案)的性能。在半径7 km的小区上进行信道测量,并从收集的数据中提取出信道统计信息,例如K因子,交叉极化鉴别(XPD)和衰落信号相关性。在每个位置,这些参数的不同组合会产生不同的空间复用和Alamouti方案性能(以平均未编码误码率衡量)。结果表明,如果可能的话,通过反馈正确选择传输模式可以将误码率降低几个数量级。此外,结果暗示在上方/下方的小区内存在优选模式切换距离,一种传输模式通常表现出优异的性能。

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