Coverage analysis for millimeter wave uplink cellular networks with partial zero-forcing receivers

Chao Fang, Behrooz Makki, T. Svensson
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引用次数: 6

Abstract

Cellular networks operating at millimeter wave (mmWave) frequencies are able to achieve multi-gigabit-per-second data rates due to the large bandwidth available. However, the data transmission range will be shorter and significant signal power difference will be observed between line-of-sight (LOS) and non-line-of-sight (NLOS) links. This paper considers interference management and useful signal enhancement in the uplink transmission of small-cell mmWave networks. Taking blockages into account, we analyze the coverage performance of the partial-zero-forcing (PZF) receiver which utilizes a number of antennas to cancel out the strongest uplink interferers and uses the rest of the antennas for boosting the useful signal. Using stochastic geometry, we derive analytical expressions for the coverage probability of the PZF receiver under a LOS probability function based path loss model. For a broad range of parameter settings, the maximum coverage probability is achieved by using most antennas for array gain and only canceling a few strongest interferers. Particularly, compared to zero-forcing, the PZF scheme can improve the coverage probability significantly.
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部分零强迫接收机的毫米波上行蜂窝网络覆盖分析
由于可用的大带宽,在毫米波(mmWave)频率上运行的蜂窝网络能够实现每秒千兆比特的数据速率。但数据传输距离较短,视距链路和非视距链路的信号功率差异较大。本文研究了小小区毫米波网络上行传输中的干扰管理和有用信号增强。在考虑阻塞的情况下,我们分析了部分零强迫(PZF)接收机的覆盖性能,该接收机利用多个天线来抵消最强的上行干扰,并利用其余天线来增强有用信号。利用随机几何,导出了基于LOS概率函数的路径损失模型下PZF接收机覆盖概率的解析表达式。对于大范围的参数设置,最大的覆盖概率是通过使用大多数天线来获得阵列增益,只抵消几个最强的干扰。特别是,与零强迫相比,PZF方案可以显著提高覆盖概率。
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Keynote speaker Keynote speaker Ad-Hoc, Mobile, and Wireless Networks: 19th International Conference on Ad-Hoc Networks and Wireless, ADHOC-NOW 2020, Bari, Italy, October 19–21, 2020, Proceedings Retraction Note to: Mobility Aided Context-Aware Forwarding Approach for Destination-Less OppNets Ad-Hoc, Mobile, and Wireless Networks: 18th International Conference on Ad-Hoc Networks and Wireless, ADHOC-NOW 2019, Luxembourg, Luxembourg, October 1–3, 2019, Proceedings
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