标题: | 未来5G核心网路移动管理组件的非存取层模组之实作 Implementation of NAS module inside MME for future 5G core network |
作者: | 林哲弘 陈志成 Lin, Jhe-Hong Chen, Jyh-Cheng 资讯科学与工程研究所 |
关键字: | Network Slicing;MME;NAS;NFV;Network Slicing;MME;NAS;NFV |
公开日期: | 2016 |
摘要: | 随着现今网路的快速发展,深入了生活中的每一部份,不仅一般手机使用者对其的要求如频宽、可靠度等等的日渐提高,也开始出现各种不同类型使用者如高速交通工具、大量装置等等的需求,且根据下世代移动网路联盟 NGMN所提出的5G白皮书,其中有一项便是大量装置的连线需求,便可看出对不同类型使用者提供相应服务的迫切,然而现今的 4G 核心网路,却有着两大根本上的限制,一为网路元件皆为使用专用硬体布建而成,另一则是无法针对不同类型的使用者有专门的客制化服务。 本篇论文主要有两大贡献,一为透过个5G Core Network Testbed (Open5GCore),修改其软体的限制以及加入 Software Defined Networking (SDN) 之能力,实作了一套系统能透过 Network Function Virtualization (NFV) 有效的scale up / down 网路元件,且能根据不同类型的使用者,开启相对应的专用核心网路,称为Network Slice,且能依据使用者的流量,动态的开启或关闭 Slice 的能力。而为了提供不同 Slice 专属的网路服务,我们提出了一个模组化且可 reconfigurable 的核心网路概念,可以透过简单的新增不同的模组,来产生出针对不同类型使用者,提供不同服务的核心网路元件。而本篇论文的另一贡献则是实作了基础核心网路元件之一的 Mobility Management Entity (MME) 之中的 Non-Access-Stratum (NAS) Protocol,此为MME之基础网路服务,以此模组为基石,便可新增其他类型使用者专用服务之模组,来产生不同类型使用者专属的MME。 Mobile phones are becoming a part of our daily life. Not only human users, but also other types of devices such as high-speed vehicles, massive machine-type users ask for more and more bandwidth and reliability of mobile networks. According to the 5G white paper proposed by Next Generation Mobile Network (NGMN), it requires to provide services to heterogeneous types of users including human users and massive machine-type users. Therefore, it is critical to provide optimized services to different types of users. However, today’s 4G core networks have two fundamental limits: the first one is that every network entity is built by dedicated hardware; another one is that the 4G core networks cannot provide customized services to different types of users. In this thesis, we first dealt with the restricts of a core network testbed, Open5GCore, and integrated it with Software Defined Networking (SDN) to build a system that can use Network Function Virtualization (NFV) to easily scale up/down network entities. Moreover, our system can open Network Slices according to the needs of different types of users. It can also dynamically open/close network slices according to user’s network flows. We then proposed a way to modularize, reconfigurable core networks. It can easily add new modules to create customized network entities. Another contribution of this thesis is that we have implemented the NAS protocol in MME. Developer can use this common MME to build different MMEs by adding different modules. |
URI: | http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070356110 http://hdl.handle.net/11536/139520 |
显示于类别: | Thesis |