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CU-LTE: Spectrally-efficient and fair coexistence between LTE and Wi-Fi in unlicensed bands

机译:CU-LTE:无执照频段中的LTE和Wi-Fi之间频谱高效且公平共存

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To cope with the increasing scarcity of spectrum resources, researchers have been working to extend LTE/LTE-A cellular systems to unlicensed bands, leading to so-called unlicensed LTE (U-LTE). However, this extension is by no means straightforward, primarily because the radio resource management schemes used by LTE and by systems already deployed in unlicensed bands are incompatible. Specifically, it is well known that coexistence with scheduled systems like LTE degrades considerably the throughput of Wi-Fi networks that are based on carrier-sense medium access schemes. To address this challenge, we propose for the first time a cognitive coexistence scheme to enable spectrum sharing between U-LTE and Wi-Fi networks, referred to as CU-LTE. The proposed scheme is designed to jointly determine dynamic channel selection, carrier aggregation and fractional spectrum access for U-LTE networks, while guaranteeing fair spectrum access for Wi-Fi based on a newly designed cross-technology fairness criterion. We first derive a mathematical model of the spectrum sharing problem for the coexisting networks; we then design a solution algorithm to solve the resulting fairness constrained mixed integer nonlinear optimization problem. The algorithm, based on a combination of branch and bound and convex relaxation techniques, maximizes the network utility with guaranteed optimality precision that can be set arbitrarily to 1 at the expense of computational complexity. Performance evaluation indicates that near-optimal spectrum access can be achieved with guaranteed fairness between U-LTE and Wi-Fi. Issues regarding implementation of CU-LTE are also discussed.
机译:为了应对频谱资源日益匮乏的问题,研究人员一直在努力将LTE / LTE-A蜂窝系统扩展到非许可频段,从而导致所谓的非许可LTE(U-LTE)。但是,这种扩展绝非简单易懂,主要是因为LTE使用的无线资源管理方案与已经在非授权频段部署的系统不兼容。具体而言,众所周知,与诸如LTE的调度系统共存会大大降低基于载波感知媒体访问方案的Wi-Fi网络的吞吐量。为了应对这一挑战,我们首次提出了一种认知共存方案,以实现U-LTE和Wi-Fi网络(称为CU-LTE)之间的频谱共享。提出的方案旨在共同确定U-LTE网络的动态信道选择,载波聚合和部分频谱接入,同时基于新设计的跨技术公平性标准保证Wi-Fi的公平频谱接入。我们首先导出一个共存网络的频谱共享问题的数学模型。然后,我们设计了一种求解算法,以解决由此产生的公平约束混合整数非线性优化问题。该算法基于分支,边界和凸松弛技术的组合,以保证的最佳精度最大化网络效用,该精度可以以计算复杂度为代价任意设置为1。性能评估表明,可以在保证U-LTE和Wi-Fi之间的公平性的情况下实现接近最佳的频谱访问。还讨论了有关CU-LTE实施的问题。

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