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Local Anchor Schemes for Seamless and Low-Cost Handover in Coordinated Small Cells

机译:协作小型小区中无缝和低成本切换的本地锚方案

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摘要

Cellular systems are rapidly evolving from a homogeneous macrocell deployment to a heterogeneous deployment of macrocells overlaid with many small cells. The striking features of small cells include small coverage area, ad-hoc deployment, and flexible backhaul connectivity. These features call for a profound rethinking of traditional cellular concepts including mobility management and interference management among others. Owing to the unique features, coordinated small cells or commonly referred to as network of small cells promises several benefits including efficient mobility management in a rapid and scalable fashion. The problem of handover in a high-density small cell deployment is studied in this work. A novel local anchor-based architecture for a static cluster of small cells is proposed using which new handover schemes are presented. Such clusters are prevalent in the evolving cellular systems involving high-density small cell deployments in urban, residential, and enterprise environments. A mathematical framework is developed using discrete-time-Markov-models to evaluate the proposed schemes. Using this, closed-form expressions for key handover metrics including handover cost and interruption time are derived. Extensive numerical and simulation studies indicate significant savings of over 50 percent in the handover costs and, more importantly, up to 80 percent in the handover interruption time compared to the existing 3GPP scheme for coordinated small cells.
机译:蜂窝系统正在从同构的宏小区部署迅速演变为覆盖有许多小型小区的宏小区的异构部署。小型蜂窝的显着特征包括覆盖范围小,临时部署和灵活的回程连接。这些功能要求对传统蜂窝概念进行深刻的重新思考,包括移动性管理和干扰管理等。由于独特的功能,协作的小型小区或通常称为小型小区的网络有望带来诸多好处,包括以快速和可扩展的方式进行有效的移动性管理。在这项工作中,研究了高密度小小区部署中的切换问题。针对小小区的静态集群,提出了一种新颖的基于本地锚的架构,利用该架构提出了新的切换方案。在不断发展的蜂窝系统中,此类集群十分普遍,涉及在城市,住宅和企业环境中进行的高密度小蜂窝部署。使用离散时间马尔可夫模型开发了数学框架,以评估所提出的方案。使用此方法,可以得出关键交接指标的封闭式表达式,包括交接成本和中断时间。大量的数值和仿真研究表明,与现有的3GPP协作小蜂窝方案相比,切换成本可节省50%以上,更重要的是,切换中断时间可节省多达80%。

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