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Energy Efficiency Evaluation of Cellular Networks Based on Spatial Distributions of Traffic Load and Power Consumption

机译:基于交通负荷和功耗的空间分布的蜂窝网络能效评估

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摘要

Energy efficiency has gained its significance when service providers' operational costs burden with the rapidly growing data traffic demand in cellular networks. In this paper, we propose an energy efficiency model for Poisson-Voronoi tessellation (PVT) cellular networks considering spatial distributions of traffic load and power consumption. The spatial distributions of traffic load and power consumption are derived for a typical PVT cell, and can be directly extended to the whole PVT cellular network based on the Palm theory. Furthermore, the energy efficiency of PVT cellular networks is evaluated by taking into account traffic load characteristics, wireless channel effects and interference. Both numerical and Monte Carlo simulations are conducted to evaluate the performance of the energy efficiency model in PVT cellular networks. These simulation results demonstrate that there exist maximal limits for energy efficiency in PVT cellular networks for given wireless channel conditions and user intensity in a cell.
机译:当服务提供商的运营成本随着蜂窝网络中快速增长的数据流量需求而负担时,能源效率就变得越来越重要。在本文中,我们提出了考虑交通负荷和功耗的空间分布的Poisson-Voronoi镶嵌(PVT)蜂窝网络的能效模型。对于典型的PVT小区,可以得出话务量和功耗的空间分布,并且可以基于Palm理论将其直接扩展到整个PVT蜂窝网络。此外,通过考虑流量负载特性,无线信道影响和干扰来评估PVT蜂窝网络的能效。进行了数值模拟和蒙特卡洛模拟,以评估PVT蜂窝网络中能效模型的性能。这些仿真结果表明,对于给定的无线信道条件和小区中的用户强度,PVT蜂窝网络中的能量效率存在最大限制。

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