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Comparing Adaptive Beamforming in Micro- and Macro-Cells

机译:在微蜂窝和宏蜂窝中比较自适应波束成形

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This paper shows how wideband and directional channel physical constraints fundamentally condition adaptive beamforming, comparing between micro- and macro-cells. We define the angular and temporal densities, and multiuser multipath frequency parameters. Their meaning roots from the way that temporal and angular dispersions affect the original correlation properties of signals transmitted among links, reflecting channel richness in the multiuser sense. Their trends are consistent with beamforming performance divergences between those cell environments, helping to establish the main physical constraints. Among key micro- and macro-cell multiuser propagation scenarios, multiuser multipath frequency values are near one order of magnitude larger in micro-cells, compared to macro-cells. This is in agreement with the better beamforming obtained for the micro-cells channel. In the case of terminal grouping, where multiuser channels contribute with the same angles- and times-of-arrival, beamforming gains are limited to being close to 0 dB in macro-cells. In similar conditions, micro-cells' results reach up to 11.6 dB for 4 users, or 9.6 dB for 16, and also render larger beamforming robustness. The physical-level reasoning behind this work is flexible to be applied to most wideband directional propagation models. The presented parameters are general and useful in evaluating spatial filtering techniques, together with those models.
机译:本文显示了宽带和定向信道的物理约束如何从根本上调节自适应波束形成,并比较了微小区和宏小区。我们定义了角度和时间密度,以及多用户多径频率参数。它们的含义源于时间色散和角度色散影响链路之间传输的信号的原始相关属性的方式,反映了多用户意义上的信道丰富性。它们的趋势与那些小区环境之间的波束形成性能差异相一致,从而有助于建立主要的物理约束条件。在关键的微蜂窝和宏蜂窝多用户传播方案中,与宏蜂窝相比,微蜂窝中的多用户多径频率值接近一个数量级。这与为微小区信道获得的更好的波束形成是一致的。在终端分组的情况下,其中多用户信道以相同的到达角度和到达时间做出贡献,在宏小区中,波束成形增益被限制为接近于0 dB。在相似的条件下,微蜂窝的结果对4个用户可达11.6 dB,对16个用户可达9.6 dB,并且还具有更大的波束成形鲁棒性。这项工作背后的物理层推理可以灵活地应用于大多数宽带定向传播模型。所提出的参数与那些模型一起在评估空间滤波技术方面是通用且有用的。

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