首页> 外文期刊>Optical Communications and Networking, IEEE/OSA Journal of >Handover reduction in virtualized cloud radio access networks using TWDM-PON fronthaul
【24h】

Handover reduction in virtualized cloud radio access networks using TWDM-PON fronthaul

机译:使用TWDM-PON前传减少虚拟化云无线电接入网的切换

获取原文
获取原文并翻译 | 示例

摘要

To meet challenging 5G capacity requirements, operators are densifying their cellular networks by deploying additional small cells to cover hot spots, and such an increase in the number and density of cells may result in excessive numbers of handovers. In this study, we propose a handover reduction mechanism implemented in a cloud radio access network (CRAN) by exploiting the high capacity of an optical access network serving as a "fronthaul." CRAN has been proposed as a 5G radio access network architecture, where the digital unit (DU) of a conventional base station (BS) is separated from the radio unit (RU) and moved to the "cloud" (DU-cloud) for better mobility management and cost saving. Separating RUs and DUs requires a low-latency and high-bandwidth 5G transport network to handle "fronthaul" traffic, for which optical access is an excellent choice. Here, we present a new 5G architecture, called virtualized-CRAN (V-CRAN), moving toward a cell-less 5G mobile network architecture. We leverage the concept of a "virtualized-BS" (V-BS) that can be formed by exploiting several enabling technologies such as software-defined radio and coordinated multipoint transmission/reception. A V-BS can be formed on a per-user basis by allocating virtualized resources on demand so that common signals can be jointly transmitted from multiple RUs to the user without triggering handover. We first model the handover reduction optimization problem for a scenario where future mobility information is known, and then propose a suite of algorithms for a scenario where future information is unknown. Simulation results show that V-CRAN can enhance the throughput of users at the cell-edge, as well as significantly reduce the number of handovers, handover delay, and failure rate.
机译:为了满足具有挑战性的5G容量要求,运营商正在通过部署更多的小型小区来覆盖热点来使其蜂窝网络致密化,并且小区数量和密度的这种增加可能会导致切换数量过多。在这项研究中,我们提出了一种通过利用用作“前传”的光接入网络的高容量,在云无线电接入网络(CRAN)中实现的切换减少机制。已经提出将CRAN作为5G无线电接入网络架构,其中常规基站(BS)的数字单元(DU)与无线电单元(RU)分离,并移至“云”(DU-cloud)以获得更好的效果。移动管理和节省成本。分开的RU和DU需要低延迟和高带宽的5G传输网络来处理“前传”流量,光接入是绝佳的选择。在这里,我们介绍了一种称为虚拟化CRAN(V-CRAN)的新5G架构,它正在朝无蜂窝5G移动网络架构发展。我们利用“虚拟化BS”(V-BS)的概念,可以通过利用多种使能技术(例如软件定义的无线电和协作式多点传输/接收)来形成。通过按需分配虚拟化资源,可以在每个用户的基础上形成V-BS,以便可以在不触发切换的情况下将公共信号从多个RU共同发送给用户。我们首先为将来的移动性信息已知的场景建模切换减少优化问题,然后针对未来的信息未知的场景提出一套算法。仿真结果表明,V-CRAN可以提高小区边缘用户的吞吐量,并显着减少切换次数,切换延迟和故障率。

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