首页> 外文期刊>Wireless personal communications: An Internaional Journal >TRILL-Based Mobile Packet Core Network for 5G Mobile Communication Systems
【24h】

TRILL-Based Mobile Packet Core Network for 5G Mobile Communication Systems

机译:基于TRILL的5G移动通信系统移动分组核心网

获取原文
获取原文并翻译 | 示例
       

摘要

In the Evolved Packet Core (EPC) network architecture for 4G mobile communication systems, the data delivery is performed based on the GPRS tunneling protocol (GTP) between eNodeB and the gateways. However, the use of GTP tunnels may give some drawbacks, which include large tunneling overhead for packet, non-optimal data paths between Mobile hosts within the same network, and frequent tunnel updates for every handover. In this paper, we propose a new architecture for mobile core network in the emerging 5G mobile systems. The proposed mobile core network architecture is based on the Transparent Interconnection of Lots of Links (TRILL) protocol for data delivery and mobility management, named TRILL-based Packet Core (TPC). In the proposed architecture, each eNodeB will function as a Routing Bridge (RB) of TRILL. The data delivery operations are performed between RBs by using TRILL switching mechanisms, rather than using GTP tunnels. The proposed architecture uses Mobility Management Entity (MME) to manage the mapping information between identifier (IP address of user equipment) and locator (MAC address of RB). For handover of user equipment, the location of users will be updated with MME. By numerical analysis, it is shown that the proposed 5G-TPC architecture can give more performance benefits than the 4G-EPC architecture in terms of data tunneling overhead, total transmission delay and route update delay after handover .
机译:在用于4G移动通信系统的演进式分组核心(EPC)网络体系结构中,数据传递是基于eNodeB与网关之间的GPRS隧道协议(GTP)执行的。但是,使用GTP隧道可能会带来一些缺点,其中包括数据包的大量隧道开销,同一网络内移动主机之间的非最佳数据路径以及每次切换时频繁的隧道更新。在本文中,我们为新兴的5G移动系统中的移动核心网络提出了一种新架构。所提出的移动核心网络体系结构基于用于数据传输和移动性管理的大量链路透明互连(TRILL)协议,称为基于TRILL的分组核心(TPC)。在提出的架构中,每个eNodeB都将充当TRILL的路由桥(RB)。通过使用TRILL交换机制,而不是使用GTP隧道,在RB之间执行数据传递操作。所提出的体系结构使用移动性管理实体(MME)来管理标识符(用户设备的IP地址)和定位器(RB的MAC地址)之间的映射信息。对于用户设备的切换,将使用MME更新用户的位置。通过数值分析表明,在数据隧道开销,总传输延迟和切换后路由更新延迟方面,提出的5G-TPC体系结构比4G-EPC体系结构具有更多的性能优势。

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