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User association in 5G heterogeneous networks with mesh millimeter wave backhaul links

机译:具有网状毫米波回程链路的5G异构网络中的用户关联

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Fifth generation (5G) wireless networks will target at energy and spectrum efficient solutions to cope with the increasing demands in capacity and energy efficiency. To achieve this joint goal, dense networks of small cells (SCs) are expected to overlay the existing macro cells. In parallel, for the SC connection to the core network, a promising solution lies in a mesh network of high capacity millimeter wave backhaul (BH) links. In the considered 5G architecture, each SC is able to forward its BH traffic to the core network through alternative paths, thus offering high BH network reliability. In this context, the joint problem of user association and BH routing becomes challenging. In this paper, we focus on this problem targeting at energy and spectrum efficient solutions. A low-complexity algorithm is proposed, which bases its user association and BH routing decision i) on minimizing the spectrum resources to guarantee the user rate, so as to provide high spectrum efficiency, and ii) on minimizing both the access network and BH route power consumption to provide high energy efficiency. Our results show that our solution provides better trade-offs between energy and spectrum efficiency than the state-of-the-art in 3GPP scenarios.
机译:第五代(5G)无线网络将针对能源和频谱高效的解决方案,以应对容量和能源效率不断增长的需求。为了实现这一共同目标,预计小型小区(SC)的密集网络将覆盖现有的宏小区。同时,对于SC与核心网络的连接,一种有前途的解决方案在于高容量毫米波回程(BH)链路的网状网络。在考虑的5G架构中,每个SC都可以通过备用路径将其BH流量转发到核心网络,从而提供高BH网络可靠性。在这种情况下,用户关联和BH路由的联合问题变得具有挑战性。在本文中,我们将重点放在针对能源和频谱高效解决方案的问题上。提出了一种低复杂度的算法,该算法基于用户关联和BH路由决策,i)基于最小化频谱资源以保证用户速率,从而提供高频谱效率,ii)基于最小化接入网和BH路由功耗可提供高能效。我们的结果表明,与3GPP方案中的最新技术相比,我们的解决方案在能量和频谱效率之间提供了更好的折衷方案。

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