Design and Experiment of NFV-Based Virtualized IP Multimedia Subsystem

Wei-Kuo Chiang, Juin-Wei Wen
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引用次数: 3

Abstract

IP multimedia subsystem (IMS) has been recognized as the core control platform for the next generation network (NGN). In this paper, we focus on virtualizing IMS by enabling network function virtualization (NFV). NFV virtualizes network functions into software applications. The virtualized network functions can be decomposed into smaller functional blocks which will enable a high level of elasticity. This paper proposes an NFV-based virtualized IMS (vIMS) architecture that decomposes the S-CSCF into two key functions: one handles the UE registration (registration; R) and the other processes the call control (call control; C). Then the original I-CSCF is combined with the registration function (R), denoted by vI-CSCF(R). The S-CSCF reserves the call control function (C) only, denoted by vS-CSCF(C). We also design the registration procedure and call setup procedure in the vIMS. The vI-CSCF(R) is responsible for the original I-CSCF function and UE registration; thus, the vS-CSCF(C) is offloaded without handling any UE registration message. In addition, we analyze the queuing delay time of registration and call setup in the NFV-based vIMS architecture. Compared with the straightforward solution for IMS virtualization, our proposed vIMS has shorter delay time of registration and call setup by improving the S-CSCF's performance. In order to verify the feasibility of our proposal, we developed and deployed our proposed vIMS and the Clearwater-vIMS with OpenStack and Clearwater software, and run the stress test on them respectively. Compared to the original Clearwater-vIMS, our proposed vIMS have higher registration success rate and call setup success rate.
基于nfv的虚拟IP多媒体子系统的设计与实验
IP多媒体子系统(IMS)已被公认为下一代网络(NGN)的核心控制平台。在本文中,我们着重于通过启用网络功能虚拟化(NFV)来虚拟化IMS。NFV将网络功能虚拟化为软件应用。虚拟化的网络功能可以分解成更小的功能块,这将实现高水平的弹性。本文提出了一种基于nfv的虚拟化IMS (vIMS)体系结构,该体系结构将S-CSCF分解为两个关键功能:一个处理终端注册(注册);R)和其他进程的呼叫控制(呼叫控制;C),然后将原I-CSCF与配准函数(R)结合,记为vI-CSCF(R)。S-CSCF只保留呼叫控制功能(C),用vS-CSCF(C)表示。我们还设计了vIMS中的注册程序和调用设置程序。vI-CSCF(R)负责原始I-CSCF功能和UE注册;因此,vS-CSCF(C)在不处理任何UE注册消息的情况下被卸载。此外,我们还分析了基于nfv的vIMS体系结构中注册和呼叫建立的排队延迟时间。通过改进S-CSCF的性能,与直接的IMS虚拟化方案相比,我们提出的vIMS具有更短的注册和呼叫建立延迟时间。为了验证我们提案的可行性,我们使用OpenStack和Clearwater软件开发和部署了我们提出的vIMS和Clearwater-vIMS,并分别对它们进行了压力测试。与原来的Clearwater-vIMS相比,我们提出的vIMS具有更高的注册成功率和呼叫建立成功率。
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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