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A Traffic Load Balancing Framework for Software-Defined Radio Access Networks Powered by Hybrid Energy Sources

机译:由混合能源供电的软件定义的无线电接入网络的流量负载平衡框架

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Dramatic mobile data traffic growth has spurred a dense deployment of small cell base stations (SCBSs). Small cells enhance the spectrum efficiency and thus enlarge the capacity of mobile networks. Although SCBSs consume much less power than macro BSs (MBSs) do, the overall power consumption of a large number of SCBSs is phenomenal. As the energy harvesting technology advances, base stations (BSs) can be powered by green energy to alleviate the on-grid power consumption. For mobile networks with high BS density, traffic load balancing is critical in order to exploit the capacity of SCBSs. To fully utilize harvested energy, it is desirable to incorporate the green energy utilization as a performance metric in traffic load balancing strategies. In this paper, we have proposed a traffic load balancing framework that strives a balance between network utilities, e.g., the average traffic delivery latency, and the green energy utilization. Various properties of the proposed framework have been derived. Leveraging the software-defined radio access network architecture, the proposed scheme is implemented as a virtually distributed algorithm, which significantly reduces the communication overheads between users and BSs. The simulation results show that the proposed traffic load balancing framework enables an adjustable trade-off between the on-grid power consumption and the average traffic delivery latency, and saves a considerable amount of on-grid power, e.g., 30%, at a cost of only a small increase, e.g., 8%, of the average traffic delivery latency.
机译:巨大的移动数据流量增长刺激了小型小区基站(SCBS)的密集部署。小型小区可以提高频谱效率,从而扩大移动网络的容量。尽管SCBS的功耗比宏BS(MBS)少得多,但是大量SCBS的总体功耗却是惊人的。随着能量收集技术的进步,可以通过绿色能源为基站(BS)供电,以减轻并网功耗。对于具有高BS密度的移动网络,流量负载平衡对于利用SCBS的容量至关重要。为了充分利用所收集的能量,期望将绿色能量利用作为交通量平衡策略中的性能指标。在本文中,我们提出了一种流量负载平衡框架,该框架力求在网络实用程序之间达成平衡,例如平均流量传递延迟和绿色能源利用。所提出的框架的各种特性已经得到推导。利用软件定义的无线电接入网络体系结构,所提出的方案被实现为虚拟分布式算法,这大大减少了用户与BS之间的通信开销。仿真结果表明,所提出的话务量负载均衡框架能够在并网功耗与平均话务传递延迟之间进行可调整的折衷,并节省了相当数量的并网电量,例如节省了30%。仅占平均流量交付延迟的很小一部分,例如8%。

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