Handover performance in LTE-A HetNets through inter-site distance differentiation

G. Kollias, F. Adelantado, J. Vardakas, K. Ramantas
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引用次数: 5

Abstract

Mobility Management in future cellular networks is becoming more challenging due to transition from macro only to multi-tier deployments. In this framework, the massive use of small cells rendered traditional Handover algorithms inappropriate to deal effectively with frequent Handovers, especially for fast users, in dense urban scenarios. Studies in this area focus mainly on the adjustment of the Hysteresis Margin and on the Time-to-Trigger (TTT) selection in line with the Self-Organized Networks (SON), concept. In that sense, the ability of each node to adapt its parameters to the actual scenario is considered vital for the smooth operation of the network. This work contributes to the latter by analyzing the dependence of the Handover performance on the inter-site distance between the macro cell and the small cell. Specifically, the most common KPIs (i.e. Handover, Ping Pong and Radio Link Failure probabilities) are analyzed for different inter-site distances and TTT values to provide solid basis for the TTT selection.
基于站点间距离区分的LTE-A HetNets切换性能
由于从仅宏部署到多层部署的转变,未来蜂窝网络的移动性管理将变得更具挑战性。在这个框架中,大量使用小蜂窝使得传统的切换算法不适合有效地处理频繁的切换,特别是对于快速用户,在密集的城市场景中。这方面的研究主要集中在迟滞余量的调整和基于自组织网络(SON)概念的触发时间(TTT)选择。从这个意义上说,每个节点根据实际情况调整其参数的能力对于网络的顺利运行至关重要。本工作通过分析切换性能对宏小区和小小区之间的站点间距离的依赖,为后者做出了贡献。具体来说,针对不同的站点间距离和TTT值,分析了最常见的kpi(即切换、乒乓和无线电链路故障概率),为TTT的选择提供了坚实的依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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