Energy-efficiency-aware flow-based access control in HetNets with renewable energy supply

Li Li, Yifei Wei, Mei Song, Xiaojun Wang
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引用次数: 2

Abstract

Software defined networking (SDN) is revolutionising the telecommunication networking industry by providing flexible and efficient management. This paper proposes an energy-efficiency-aware flow-based management framework for relay-assisted heterogeneous networks (HetNets), where the relay nodes are powered by renewable energy. Due to the dynamic property of user behaviour and renewable energy availability, the flow-based management layer should enhance not only the instantaneous energy efficiency but also the long-term energy efficiency, while satisfying the transmission rate demand for each user. We first formulate the energy efficiency problem in HetNets as an optimisation problem for instantaneous energy efficiency and renewable energy allocation, and propose a heuristic algorithm to solve the optimisation problem. According to the proposed algorithm, we then design a dynamic flow-table configuration policy (DFTCP) which can be integrated as an application on top of an SDN controller to enhance the long-term energy efficiency. Simulation results show that the proposed policy can achieve higher energy efficiency compared with current distributed relay strategy, which chooses the nearest or strongest signal node to access, and obtain better performance for the overall relay network when the user density and demand change.
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具有可再生能源供应的HetNets中基于流量的能效感知访问控制
软件定义网络(SDN)通过提供灵活高效的管理,正在彻底改变电信网络行业。本文提出了一种用于中继辅助异构网络(HetNets)的能效感知流管理框架,其中中继节点由可再生能源供电。由于用户行为的动态性和可再生能源的可获得性,基于流的管理层既要提高瞬时能源效率,又要提高长期能源效率,同时满足每个用户的传输速率需求。我们首先将HetNets中的能效问题描述为瞬时能效和可再生能源分配的优化问题,并提出了一种求解优化问题的启发式算法。根据提出的算法,我们设计了一个动态流表配置策略(DFTCP),该策略可以作为一个应用集成在SDN控制器上,以提高长期的能源效率。仿真结果表明,与当前选择最近或最强信号节点接入的分布式中继策略相比,所提出的策略具有更高的能源效率,当用户密度和需求发生变化时,该策略对整个中继网络具有更好的性能。
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