Orchestrating Virtualized Core Network Migration in OpenROADM SDN-Enabled Network

Shunmugapriya Ramanathan, K. Kondepu, Tianliang Zhang, Behzad Mirkhanzadeh, M. Razo, M. Tacca, L. Valcarenghi, A. Fumagalli
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引用次数: 3

Abstract

Optical network technology is one of the leading candidates for meeting the required backhaul transport layer latency and capacity requirements of 5G services. In addition, its physical layer programmability supports the execution of advanced methods that can improve 5G service reliability and SLA compliance in the face of equipment failure. While a number of such methods is addressed in the literature, including Virtual Network Function (VNF) fault-tolerant methods, a full proof of concept is yet to be reported.The study in this paper describes a testbed — along with its Software Defined Networking (SDN) and Network Function Virtualization (NFV) capabilities — which is used to experimentally showcase the key functionalities that are required by VNF fault-tolerant methods. The testbed makes use of OpenROADM compliant Dense Wavelength Division Multiplexing (DWDM) equipment to implement the programmable backhaul of a Next Generation Radio Access Network (NG-RAN) Non-standalone (NSA) architecture running 4G Evolved Packet Core (EPC) with the 5G next-generation NodeB (gNB). Specifically, the testbed is used to showcase the live migration of virtualized EPC components that is required to restore pre-failure VNF.
在OpenROADM sdn支持的网络中编排虚拟化核心网迁移
光网络技术是满足5G业务所需的回程传输层延迟和容量要求的主要候选技术之一。此外,其物理层可编程性支持执行高级方法,可以在设备故障时提高5G业务可靠性和SLA合规性。虽然文献中提到了许多这样的方法,包括虚拟网络功能(VNF)容错方法,但尚未报道完整的概念证明。本文中的研究描述了一个测试平台,以及它的软件定义网络(SDN)和网络功能虚拟化(NFV)功能,用于实验性地展示VNF容错方法所需的关键功能。该测试平台使用符合OpenROADM标准的密集波分复用(DWDM)设备来实现运行4G演进分组核心(EPC)和5G下一代NodeB (gNB)的下一代无线接入网(NG-RAN)非独立(NSA)架构的可编程回程。具体来说,测试平台用于展示恢复故障前VNF所需的虚拟EPC组件的实时迁移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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