首页> 外文会议>Annual Conference on Wireless On-demand Network Systems and Services >Unnecessary handover minimization in two-tier heterogeneous networks
【24h】

Unnecessary handover minimization in two-tier heterogeneous networks

机译:两层异构网络中不必要的切换最小化

获取原文

摘要

Ultra-dense deployment of small cells (SC) can be foreseen in 5G network under the coverage area of the macrocell (MC). A mobile user equipment (UE) should be able to discover adjacent SCs to perform the handover (HO). This process can be done by frequent neighbour cell scanning. However, extensive scanning for every SC in a dense deployment scenario is a resource wasting strategy, which results in a power dissipation of the UE battery and also lowers the throughput gain. This also means that a high number of SCs would be available for the UE to HO to. Hence, the probability of unnecessary HO will increase and in turn degrade the UE's quality of service (QoS). This paper aims to minimize unnecessary HOs in two tier heterogeneous network with dense deployment of SCs. In the proposed method, we utilise the actual distance between the UE and the SCs and the UE angle of movement to construct a shortened candidate list which helps in reducing the signal overhead of scanning and the number of unnecessary HOs. UE's movement velocity threshold based on average human walking speed is used to control the HO to the SC. Simulation results show that the proposed algorithm outperformed the conventional HO method with reduced unnecessary HOs and increased throughput for the network particularly for medium to high speed UEs resulting in good UE QoS.
机译:可以预见,在宏蜂窝(MC)覆盖区域下的5G网络中,小型蜂窝(SC)的超密集部署。移动用户设备(UE)应该能够发现相邻的SC来执行切换(HO)。该过程可以通过频繁的邻居小区扫描来完成。但是,在密集部署场景中对每个SC进行大量扫描是一种资源浪费策略,这会导致UE电池的功耗降低,并且还会降低吞吐量增益。这也意味着大量的SC将可用于UE到HO。因此,不必要的HO的可能性将增加,从而降低UE的服务质量(QoS)。本文旨在通过密集部署SC来最大程度地减少两层异构网络中不必要的HO。在提出的方法中,我们利用UE和SC之间的实际距离和UE的移动角度来构建缩短的候选列表,这有助于减少扫描的信号开销和不必要的HO数量。 UE基于平均人类步行速度的移动速度阈值用于控制SC的HO。仿真结果表明,所提出的算法优于传统的HO方法,减少了不必要的HO,并增加了网络吞吐量,特别是对于中高速UE而言,导致了良好的UE QoS。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号