Network Function Virtualization (NFV), network slicing, and Software-Defined Networking (SDN) are the key enablers of the fifth generation of mobile networks (5G). Service Function Chaining (SFC) plays a critical role in delivering sophisticated service per slice and enables traffic traversal through a set of ordered Service Functions (SFs). In fully symmetric SFCs, the uplink and downlink traffic traverse the same SFs, while in asymmetric SFC, the reverse-path may not necessarily cross the same SFs in the reverse order. Proposed approaches in the literature support either full symmetry or no symmetry. In this paper, we discuss the partial symmetry concept, that enforces the reverse path to traverse the SFs only when needed. Our contribution is threefold. First, we propose a novel SFC framework with an abstraction layer that can dynamically create partial or full symmetric SFCs across multiple administrative and technological cloud/edge domains. According to the Key Performance Indicators (KPIs) and desired objectives specified at the network slice intent request, the abstraction layer would automatise different SFC operations, but specifically generating partial or full symmetric SFCs. Second, we propose an algorithm to dynamically calculate the reverse path for an SFC by including only SFs requiring symmetry. Third, we implement a prototype application to test the performance of the partial symmetry algorithm. The obtained results show the advantages of partial symmetry in reducing both the SFC delivery time and the load on VNFs.
翻译:网络功能虚拟化(NFV)、网络剪切和软件定义网络化(SDN)是第五代移动网络(5G)的关键推进器。服务功能链化(SFC)在提供每切的复杂服务方面发挥着关键作用,并且能够通过一组有秩序的服务功能(SFS)进行交通穿行。在完全对称的SFCs, 上行和下行的交通流量跨同一SFC, 在不对称的SFC中,反向路径不一定跨越反向顺序中相同的部分SFC。在文献中,拟议的方法既支持完全的对称性,也支持无对称性。在本文件中,我们讨论部分对称概念,即只在必要时执行逆向路径,通过一组有秩序的SFCS(SFC),我们提出一个新的SFC框架,在多个行政和技术云/高级域中,只能动态地产生部分或完全对称的SFCSFC。根据关键性指标和预想的目标,我们在网络切切切目的的正切原方向操作中,需要一个反向的SFCFFC,将显示一个反向方向的运行。