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用于多无线电双连接场景的位置感知节点管理解决方案

Location-Aware Node Management Solution for Multi-Radio Dual Connectivity Scenarios.

作者信息

Burgueño Jesús, de-la-Bandera Isabel, Barco Raquel

机构信息

Instituto Universitario de Investigación en Telecomunicación (TELMA), Universidad de Málaga, CEI Andalucía TECH, 29010 Málaga, Spain.

出版信息

Sensors (Basel). 2021 Nov 9;21(22):7450. doi: 10.3390/s21227450.

Abstract

The location of user equipments (UEs) allows application developers to customize the services for users to perceive an enhanced experience. In addition, this UE location enables network operators to develop location-aware solutions to optimize network resource management. Moreover, the combination of location-aware approaches and new network features introduced by 5G enables to further improve the network performance. In this sense, dual connectivity (DC) allows users to simultaneously communicate with two nodes. The basic strategy proposed by 3GPP to select these nodes is based only on the power received by the users. However, the network performance could be enhanced if an alternative methodology is proposed to make this decision. This paper proposes, instead of power-based selection, to choose the nodes that provide the highest quality of experience (QoE) to the user. With this purpose, the proposed system uses the UE location as well as multiple network metrics as inputs. A dense urban scenario is assumed to test the solution in a system-level simulation tool. The results show that the optimal selection varies depending on the UE location, as well as the increase in the QoE perceived by users of different services.

摘要

用户设备(UE)的位置使应用程序开发者能够为用户定制服务,以提供更好的体验。此外,UE的位置还使网络运营商能够开发位置感知解决方案,以优化网络资源管理。此外,位置感知方法与5G引入的新网络特性相结合,能够进一步提升网络性能。从这个意义上讲,双连接(DC)允许用户同时与两个节点进行通信。3GPP提出的选择这些节点的基本策略仅基于用户接收到的信号强度。然而,如果能提出一种替代方法来做出这一决策,网络性能可能会得到提升。本文提出,不采用基于信号强度的选择方式,而是选择能为用户提供最高体验质量(QoE)的节点。为此,所提出的系统将UE位置以及多个网络指标作为输入。假设在一个密集城市场景中,在系统级仿真工具中测试该解决方案。结果表明,最佳选择会因UE位置而异,不同服务的用户所感知到的QoE也会增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd9d/8622751/30c189c07e0e/sensors-21-07450-g001.jpg

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