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Synergistic spectrum sharing in 5G HetNets: A harmonized SDN-enabled approach

机译:5G HetNets中的协同频谱共享:采用SDN的统一方法

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Given the anticipated 1000 times growth of tele-traffic, the conception of efficient spectrum management and sharing mechanisms becomes essential for 5G networks due to the scarcity of spectral resources. To meet this ambitious goal, we propose an SDN-based synergistic spectrum sharing technique, the harmonized SDN-enabled approach (HSA), which relies on distributed input reporting on spectrum availabilities in 5G heterogeneous networks. Conventional spectrum sharing mechanisms, particularly those using cognitive radio techniques, rely heavily on spectrum sensing and adaptive transmission-aided communications devices. However, this device-level spectrum sharing might lead to inaccurate sharing decisions due to the widely fluctuating signal quality observed by each device. Moreover, the network becomes vulnerable to malicious devices that report false sensing data to gain unfair access to the spectrum. These problems are further compounded by the fact that operational cellular networks have a somewhat rigid architecture relying on vendor-specific configuration interfaces, hence restricting the operators to have, at best, only indirect control of the network???s operation and resources. In addressing these challenges, we adopt a synergistic approach that integrates the distributed sensing devices, cellular base stations, and SDN controller into an intrinsically amalgamated network. To alleviate any potential controller scalability and latency concerns, HSA harmonizes the network???s operation by distributing the local decision making and network-wide policy making tasks among the base stations and the SDN controller, respectively. The article outlines the detailed network architecture and also presents an efficient resource management algorithm.
机译:考虑到预计的电信业务量将增长1000倍,由于频谱资源的匮乏,有效的频谱管理和共享机制的概念对于5G网络至关重要。为了实现这一宏伟目标,我们提出了一种基于SDN的协同频谱共享技术,即统一的SDN支持方法(HSA),该技术依赖于5G异构网络中频谱可用性的分布式输入报告。传统的频谱共享机制,特别是那些使用认知无线电技术的频谱共享机制,在很大程度上依赖于频谱感应和自适应传输辅助通信设备。但是,由于每个设备观察到的信号质量变化很大,这种设备级频谱共享可能导致共享决策不准确。此外,网络容易受到恶意设备的攻击,这些设备会报告错误的感知数据以获取对频谱的不公平访问。这些问题由于以下事实而进一步复杂化:可操作的蜂窝网络具有某种严格的体系结构,依赖于特定于供应商的配置接口,因此限制了运营商充其量只能对网络的运营和资源进行间接控制。为了应对这些挑战,我们采用了一种协同方法,将分布式传感设备,蜂窝基站和SDN控制器集成到一个内部合并的网络中。为了减轻任何潜在的控制器可伸缩性和延迟问题,HSA通过分别在基站和SDN控制器之间分配本地决策和网络范围的决策任务来协调网络的运行。本文概述了详细的网络体系结构,还提出了一种有效的资源管理算法。

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