System-level performance of mmWave cellular networks for urban micro environments

Nadisanka Rupasinghe, Yuichi Kakishima, Ismail Güvenç
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引用次数: 6

Abstract

In this paper, we investigate the propagation coupling loss (captures all sources of attenuation between serving cell and mobile station (MS)) and geometry metric (GM) (downlink average signal-to-interference plus noise ratio) performance of mmWave cellular networks for outdoor and indoor MSs, considering urban micro (UMi) environments. Based on these studies, we identify effective mmWave frequency bands for cellular communication. We consider 3GPP compliant system-level simulations with two power allocation schemes: 1) transmit power scaled with communication bandwidth, and 2) constant total transmit power. Simulation results show that with scaled transmit power allocation, GM performance degradation is small: 20% of MSs experience GM less than 0 dB at all mmWave frequencies considered, for outdoor MSs. With constant Tx power allocation, 20% of MSs experience GM less than 0 dB for frequencies up to 30 GHz. Furthermore, 35% (48%) of outdoor MSs experience GM performance less than 0 dB at 60 GHz (100 GHz). On the other hand, for indoor MSs, even with scaled Tx power allocation, favorable GM performance is observed only at low frequencies, i.e., 2 GHz.
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城市微环境下毫米波蜂窝网络的系统级性能
在本文中,我们研究了毫米波蜂窝网络在室外和室内的传播耦合损耗(捕获服务小区和移动站(MS)之间的所有衰减源)和几何度量(GM)(下行平均信干扰加噪声比)性能,考虑到城市微(UMi)环境。基于这些研究,我们确定了蜂窝通信的有效毫米波频段。我们考虑了符合3GPP标准的系统级仿真,采用两种功率分配方案:1)发射功率与通信带宽成比例,2)总发射功率恒定。仿真结果表明,在按比例分配发射功率的情况下,GM性能下降很小:对于室外MSs,在所有毫米波频率下,20%的MSs经历的GM小于0 dB。在恒定的Tx功率分配下,在高达30 GHz的频率下,20%的MSs的GM小于0 dB。此外,35%(48%)的户外MSs在60 GHz (100 GHz)时的GM性能低于0 dB。另一方面,对于室内MSs,即使按比例分配Tx功率,有利的GM性能也仅在低频率(即2 GHz)下观察到。
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