异构蜂窝网络中绿色能源感知和延迟感知的用户关联

T. Han, N. Ansari
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引用次数: 73

摘要

近年来,绿色通信备受关注。对于蜂窝网络,基站(BSs)的能耗占网络能耗的50%以上。因此,降低BSs的功耗对于绿色蜂窝网络至关重要。随着绿色能源技术的发展,BSs可以使用绿色能源供电,以减少并网电力消耗,从而减少碳足迹。在本文中,我们提出了一种分布式方案,在异构蜂窝网络中实现绿色能源感知和延迟感知(GALA)用户- bs关联,该网络的BSs由并网电源和绿色能源供电。GALA算法同时考虑BSs中的流量交付延迟和绿色能源产生率来确定用户- bs关联。我们证明了GALA算法收敛于使BSs加权延迟比总和最小的最优解。仿真结果表明,GALA算法能够在并网功耗和平均流量传递延迟之间进行权衡,在并网和绿色能源并网的异构蜂窝网络中节省了大量的并网功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green-energy Aware and Latency Aware user associations in heterogeneous cellular networks
Green communications has received much attention recently. For cellular networks, the base stations (BSs) account for more than 50 percent of the energy consumption of the networks. Therefore, reducing the power consumption of BSs is crucial to greening cellular networks. With the development of green energy technologies, BSs can be powered by green energy in order to reduce the on-grid power consumption, and subsequently reduce the carbon footprints. In this paper, we have proposed a distributed scheme to enable Green-energy Aware and Latency Aware (GALA) user-BS associations in heterogeneous cellular networks whose BSs are powered by both on-grid power and green energy. The GALA algorithm considers both the traffic delivery latency and the green energy generation rate in BSs for determining the user-BS association. We have proved that the GALA algorithm converges to the optimal solution which minimizes the summation of the weighted latency ratios of BSs. The simulation results show that the GALA algorithm enables the trade-off between the on-grid power consumption and the average traffic delivery latency, and saves a significant amount of on-grid power in heterogeneous cellular networks that are powered by both on-grid power and green energy.
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