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The Impact of Deploying Pico Base Stations on Capacity and Energy Efficiency of Heterogeneous Cellular Networks

机译:部署微微基站对异构蜂窝网络能力和能效的影响

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The growth of energy consumption driven by a rise in traffic rate demand and services, requires cellular operators to extend their infrastructure to meet these demands. To address this issue, deployment of low power base stations (BSs) in traditional macrocells have recently being considered to offer high data rates and simultaneously reduce the load of the macrocellular networks. However, the massive and unplanned deployment of small cells and their uncoordinated operations raise important questions about the energy efficiency in the heterogeneous cellular networks. In this paper, the impact of deploying a number of pico BSs on the system performance of macrocellular network is investigated. We analyze the energy efficiency of the downlink macro-picocells heterogeneous network, measured by the traffic capacity divided by the power consumption of the BSs. An adaptive power control based on the iterative-waterfilling scheme has been implemented to control the power among the macro and the pico BSs. The numerical results show that the total macrocellular capacity improves as the number of pico stations increases, but the energy efficiency is improved only for a reasonable number of pico base stations. Moreover, the iterative-waterfilling power allocation scheme improves the energy efficiency even with introducing more pico base stations as compared with other power allocation schemes. This work provides essential understanding for successful deployment of power efficient heterogeneous networks.
机译:随着交通率需求和服务的增加,能源消耗的增长,需要蜂窝运营商扩展其基础设施以满足这些需求。为了解决这个问题,最近被认为在传统的宏单元中部署了传统宏小区的低功率基站(BSS),以提供高数据速率,并同时减少宏观网络的负载。然而,大型细胞的大规模和意外部署和其未协调的操作促进了关于异构蜂窝网络中的能效的重要问题。在本文中,研究了部署许多微微BS对宏细胞网络系统性能的影响。我们分析了下行链路宏微微电池异构网络的能量效率,通过流量除以BSS的功耗来测量。已经实现了基于迭代 - 水填充方案的自适应功率控制以控制宏和微微BS之间的功率。数值结果表明,随着微微电台的数量增加,总宏观容量可提高,但能量效率仅用于合理数量的微微基站。此外,即使与其他电力分配方案相比,迭代 - 水填充功率分配方案也提高了能量效率。这项工作为成功部署功率有效异构网络提供了基本理解。

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