论文标题

通过mmwave beam形成,避开蜂窝网络中的致密高原

Escaping the Densification Plateau in Cellular Networks Through mmWave Beamforming

论文作者

AlAmmouri, Ahmad, Gupta, Manan, Baccelli, Francois, Andrews, Jeffrey G.

论文摘要

我们研究了如何通过研究信噪比与差异 - 噪声比(SINR)和面积光谱效率(ASE)来研究如何根据基站(BS)空间密度$λ$的密集多敏感毫米波(MMWAVE)细胞网络性能量表。如果每个BS处的天线数量至少与$λ$线性缩放,从而增加了可能的梁配置及其主型物体增益的数量,并减少其侧室增益,我们证明SINR接近有限的随机变量,该变量与$λ$独立于$λ$,并且至少与$λ$线性线性缩放。相反,如果天线的数量用$λ$缩小了尺度,则SINR衰减至零,而ASE饱和到一个常数。因此,通过将具有较小天线的较高载体转移到较高的载体经常状态,并利用了相应增加的方向性,可以原则上避免细胞算子在细胞网络中避免致密平稳(或崩溃),而是继续通过BS致密化收获线性总和吞吐量增长。

We study how dense multi-antenna millimeter wave (mmWave) cellular network performance scales in terms of the base station (BS) spatial density $λ$, by studying the signal-to-interference-plus-noise ratio (SINR) and the area spectral efficiency (ASE). If the number of antennas at each BS scales at least linearly with $λ$, which increases the number of possible beam configurations and their main-lobe gain, and decreases their side-lobe gain, we prove that the SINR approaches a finite random variable that is independent of $λ$ and the ASE scales at least linearly with $λ$. In contrast, if the number of antennas scales sub-linearly with $λ$, then the SINR decays to zero and the ASE saturates to a constant. Thus, by moving to higher carrier frequencies with successively smaller antennas, and exploiting the correspondingly increased directionality, cellular operators can in principle avoid the densification plateau (or collapse) in cellular networks and instead continue to harvest linear sum throughput gains through BS densification.

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