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Flow-table Updating Strategy for Efficient Use of Renewable Energy in Software Defined Wireless Relay Networks

机译:在软件定义的无线中继网络中高效使用可再生能源的流表更新策略

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Software defined networking (SDN) is revolutionizing the telecommunication networking industry by providing flexible and efficient management. Because of energy cost and environmental concerns, green networking technologies are being developed to increasing energy efficiency and making use of renewable energy, for both wired and wireless networks. Relay nodes (RNs) are widely used in wireless networks to increasing energy efficiency as well as the network coverage. In this paper, we consider an SDN-enabled wireless relay network, in which the relay nodes are powered by renewable energy. In the beginning, all the users can connect to a BS or an RN in the most energy efficient way, however, the availability of renewable energy is unpredictable, and users connected to an RN will have to be handed over to base stations (BSs) when there is not enough renewable energy to power the RN. There are also occasions when an RN harvested more renewable energy than required to server the users connected to it, in these cases users connected to BS or other RNs can be transferred to connect through this RN, otherwise the harvested surplus renewable energy will be wasted as it cannot be stored. We transform the problem of optimizing the use of harvested renewable energy into a flow-table management problem. A model of harvested renewable energy available for RNs is built first, then we propose a dynamic flow-table updating strategy (DFTUS), which is driven by the availability of renewable energy, to maximize the use of the harvested renewable energy and thus minimize the use of traditional energy. DFTUS can be integrated as an application on top of an SDN controller. Simulation results show that DFTUS can make more efficient use of renewable energy thus make the overall relay network more energy efficient compared with other routing strategies such as the capacity limited strategy (CLS) and the optimal path strategy (OPS).
机译:软件定义网络(SDN)通过提供灵活而高效的管理正在彻底改变电信网络行业。由于能源成本和环境问题,正在开发绿色联网技术,以提高有线和无线网络的能源效率并利用可再生能源。中继节点(RN)广泛用于无线网络中,以提高能效以及网络覆盖范围。在本文中,我们考虑了一个支持SDN的无线中继网络,其中的中继节点由可再生能源供电。首先,所有用户都可以以最节能的方式连接到BS或RN,但是,可再生能源的可用性是不可预测的,并且连接到RN的用户将必须移交给基站(BS)。当没有足够的可再生能源来为RN供电时。在某些情况下,RN收集的可再生能源要多于为连接其的用户提供服务器所需的资源,在这种情况下,可以将连接到BS或其他RN的用户转移到此RN进行连接,否则,浪费的剩余可再生能源将浪费为它无法存储。我们将优化利用可再生能源利用的问题转化为流表管理问题。首先建立可用于RN的收获可再生能源模型,然后我们提出一种动态流表更新策略(DFTUS),该策略由可再生能源的可用性驱动,以最大程度地利用收获的可再生能源,从而最大程度地减少可再生能源的使用。利用传统能源。 DFTUS可以作为应用程序集成在SDN控制器之上。仿真结果表明,与其他路由策略(例如容量限制策略(CLS)和最佳路径策略(OPS))相比,DFTUS可以更有效地利用可再生能源,从而使整个中继网络更加节能。

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