Energy efficiency gains in interference-limited heterogeneous cellular mobile radio networks with random micro site deployment

Henrik Klessig, A. Fehske, G. Fettweis
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引用次数: 51

Abstract

Energy efficiency considerations recently gained attention due to ecological aspects, that is to say lowering CO2 emissions and reducing energy consumption. Furthermore, it is important to assess energy efficiency improvements from an operator's point of view, since energy costs are increasing and providing ubiquitous high speed mobile access may scale up the operators' operational expenditure. One of two promising approaches to enhance a network's operation regarding energy efficiency is to utilize smaller micro cells within one large macro cell. Another approach is to regard macro base stations as coverage providers for areas in between micro cells, while reducing their maximum transmit powers to a minimum. In this paper we investigate on the energy efficiency of a heterogeneous OFDM-based mobile network in the downlink taking into account the co-channel interference based on varying traffic demand per area. Furthermore, we carry out an assessment of potential energy savings of the two approaches mentioned above. For a sufficiently large traffic demand, increasing deployment densitiy through additional micro sites may maximize a network's energy efficiency. In that case the network operates at a load of less than 50 %. Moreover, a further gain of energy efficiency of about 20 % can be achieved due to macro site transmit power reduction while still providing coverage.
随机微站点部署干扰受限异构蜂窝移动无线网络的能源效率提高
由于生态方面的考虑,能源效率最近受到关注,即减少二氧化碳排放和减少能源消耗。此外,从运营商的角度评估能源效率的改进是很重要的,因为能源成本正在增加,提供无处不在的高速移动接入可能会增加运营商的运营支出。在能源效率方面,提高网络运行效率的两种有希望的方法之一是在一个大型宏单元中使用较小的微单元。另一种方法是将宏基站视为微型蜂窝之间区域的覆盖提供者,同时将其最大发射功率降至最低。本文研究了基于异构ofdm的移动网络在考虑基于不同区域流量需求的同信道干扰的下行链路的能量效率。此外,我们对上述两种方法的潜在节能进行了评估。对于足够大的流量需求,通过额外的微站点增加部署密度可以最大限度地提高网络的能源效率。在这种情况下,网络在低于50%的负载下运行。此外,由于宏观站点传输功率降低,在仍然提供覆盖的情况下,可以实现约20%的能源效率的进一步增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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