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首页> 外文期刊>IEEE Transactions on Green Communications and Networking >Enhancing Downlink QoS and Energy Efficiency Through a User-Centric Stienen Cell Architecture for mmWave Networks
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Enhancing Downlink QoS and Energy Efficiency Through a User-Centric Stienen Cell Architecture for mmWave Networks

机译:通过以MMWAVE网络为中心的STIENEN细胞架构增强下行链路QoS和能效

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摘要

This paper presents an analytical framework for performance characterization of a novel Stienen cell based user-centric architecture operating in millimeter wave spectrum. In the proposed architecture, at most one remote radio head (RRH) is activated within non overlapping user equipment (UE)-centric Stienen cells (S-cells) generated within the Voronoi region around each UE. Under the presented framework, we derive analytical models for the three key performance indicators (KPIs): i) SINR distribution (used as an indicator for quality of service (QoS)), ii) area spectral efficiency (ASE), and iii) energy efficiency (EE) as a function of the three major design parameters in the proposed architecture, namely UE service probability, S-cell radius coefficient and RRH deployment density. The analysis is validated through extensive Monte Carlo simulations. The simulation results provide practical design insights into the interplay among the three design parameters, tradeoffs among the three KPIs, sensitivity of each KPI to the design parameters as well as optimal range of the design parameters. Results show that compared to current non user-centric architectures, the proposed architecture not only offers significant SINR gains, but also the flexibility to meet diverse UE specific QoS requirements and trade between EE and ASE by dynamically orchestrating the design parameters.
机译:本文介绍了一种分析框架,用于在毫米波谱中运行的新型刻度基于用户中心架构的性能表征。在所提出的架构中,大多数远程无线电头(RRH)在围绕每个UE周围的Voronoi区域内产生的非重叠用户设备(UE) - 康复的维管单元(S-Cells)中被激活。在提出的框架下,我们推出了三个关键绩效指标(KPI):i)SINR分布的分析模型(用作服务质量(QoS)),ii)区域光谱效率(ASE)和III)能量效率(EE)作为所提出的架构中的三个主要设计参数的函数,即UE服务概率,S细胞半径系数和RRH部署密度。通过广泛的蒙特卡罗模拟验证了分析。仿真结果提供了三个设计参数中的相互作用的实用设计见解,三位KPI之间的权衡,每个KPI对设计参数的灵敏度以及设计参数的最佳范围。结果表明,与当前的非用户中心架构相比,所提出的架构不仅提供了重大的SINR增益,而且通过动态协调设计参数来满足各种UE特定QoS要求和EE和ASE之间的贸易的灵活性。

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