Base station transmission power optimization in interference-limited cellular networks for maximum energy efficiency

S. Bandopadhaya, S. Samal, Saroj Kumar Dora, V. Poulkov
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引用次数: 4

Abstract

This paper proposes a novel solution to maximize energy efficiency (EE) in interference-limited (IL) cellular networks encountered in Long-Term Evolution (LTE) and LTE-Advanced systems. The high-data rate applications running through mobile devices together with the radio access devices at the base stations (BS) cause a significant growth in energy consumption in the network accounting a large share of network operation expenditure (OpEx), as well as increased carbon emissions. Unlike an interference-free network, in the IL cellular network, a monotonically increase of the transmission power does not necessarily improve the spectral efficiency (SE) of the network. For the analysis of the EE an information theoretic approach is applied and represented as a function of the BS transmission power considering the interference signals. A gradient based optimal level solution for the BS transmission power is derived to maximize EE. A network operator can significantly reduce the energy cost by setting the transmission power of the BS at the optimum level.
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限制干扰的蜂窝网络中基站传输功率优化以获得最大能量效率
本文提出了一种新的解决方案,以最大限度地提高在长期演进(LTE)和LTE- advanced系统中遇到的干扰限制(IL)蜂窝网络的能量效率(EE)。通过移动设备运行的高数据速率应用与基站(BS)的无线接入设备一起导致网络能耗显著增长,占网络运营支出(OpEx)的很大份额,同时碳排放也在增加。与无干扰网络不同,在蜂窝网络中,传输功率的单调增加并不一定会提高网络的频谱效率(SE)。在对干扰信号进行分析时,采用了信息论的方法,并将其表示为考虑干扰信号的BS发射功率的函数。导出了一种基于梯度的BS传输功率最优电平解,使EE最大化。网络运营商可以通过将BS的传输功率设置在最优水平来显著降低能源成本。
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