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Cell division, migration and death for energy efficient 5G ultra-small cell networks

机译:节能5G超小型蜂窝网络的蜂窝分裂,迁移和死亡

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摘要

In this paper, a novel topology management scheme is proposed for 5G Small Cell Networks (SCNs). The scheme is based on cell division, migration and death dedicated to exploiting the sleep mode of base stations to reduce the number of active base stations in a SCN for energy saving. Direction Of Arrival is used in a distributed way to adapt networks to the dynamic traffic conditions. Simulation results show that the proposed scheme saves 39% power at low traffic loads compared with no topology management. With the scheme, SCNs can react to various traffic loads and consequently can sustain at least 1.2 Gbps/km/MHz traffic with low blocking probability. The proposed scheme is compared to an existing topology management scheme and demonstrated to attain similar performance while reducing information exchange overhead. The alternative configurations of the scheme are investigated and analyzed.
机译:本文针对5G小型蜂窝网络(SCN)提出了一种新颖的拓扑管理方案。该方案基于小区划分,迁移和死亡,致力于利用基站的睡眠模式来减少SCN中活动基站的数量以节省能源。到达方向以分布式方式使用,以使网络适应动态流量条件。仿真结果表明,与无拓扑管理相比,该方案在低流量负载下可节省39%的功率。通过该方案,SCN可以对各种流量负载做出反应,因此可以低阻塞概率维持至少1.2 Gbps / km / MHz的流量。将提出的方案与现有的拓扑管理方案进行了比较,并证明了在降低信息交换开销的同时达到类似的性能。研究和分析了该方案的替代配置。

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