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The cross-network energy efficient tradeoff: From wavelength division multiplexing wired networks to 5G wireless networks

机译:跨网络节能折衷方案:从波分复用有线网络到5G无线网络

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Low-delay and high energy-efficiency (defined as the transmitted bits per unit energy consumption) are highly expected in next general wireless networks. The existing green technologies of Internet Protocol (IP) have been studied in the wired and wireless networks, respectively. However, the joint optimization of the cross-networks energy-efficiency from the wired wavelength division multiplexing (WDM) networks to the next generation wireless networks remains unexplored. In this paper, we formulate a joint optimization to integrate the energy efficiency across networks. Specifically, each base station (BS) first collects the uplink user data. We then propose a novel joint cross-networks scheduling and routing algorithm according to the wireless channel quality of users, user rate, and the topology constraint. The IP packets are then delivered to the targeted users within the limit of delay. Based on the tradeoff between delay and energy efficiency, we achieve energy efficient and performance guaranteed cross-networks. The effectiveness of the proposed framework is verified by extensive simulations.
机译:在下一个通用无线网络中,人们期望低延迟和高能效(定义为每单位能耗的传输位)。已经分别在有线和无线网络中研究了Internet协议(IP)的现有绿色技术。但是,从有线波分复用(WDM)网络到下一代无线网络的跨网络能量效率的联合优化仍未探索。在本文中,我们制定了一个联合优化方案,以整合跨网络的能源效率。具体地,每个基站(BS)首先收集上行链路用户数据。然后,根据用户的无线信道质量,用户速率和拓扑约束,提出了一种新颖的联合跨网调度和路由算法。然后,在延迟限制内将IP数据包传递给目标用户。基于延迟和能效之间的权衡,我们实现了能效和性能保证的跨网络。通过广泛的仿真验证了所提出框架的有效性。

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