Uninterruptible IMS: Maintaining Users Access During Faults in Virtualized IP Multimedia Subsystem

IF 13.8 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
M. T. Raza, Songwu Lu
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引用次数: 0

Abstract

Network function virtualization (NFV) of IP Multimedia Subsystem (IMS) pose promise to service increasing multimedia traffic demand. In this paper, we show that virtualized IMS (vIMS) is unable to provide session-level resilience under faults and becomes the bottleneck to high service availability. We propose a design to provide fault-tolerance for vIMS operations. In control-plane, our system decomposes single IMS operation into different atomic actions, and partition these actions into critical and non-critical actions. Only the critical actions are then monitored in real time and the system can easily resume IMS operations after failure. In data-plane, we decompose multimedia traffic flows and partition each multimedia service as a separate Virtualized Network Function (VNF). Through data-plane partitioning, our design restricts the damage from faults to only failed VNF. Thereafter, impacted service flow is merged with other ongoing service flows. We build our system prototype of open source IMS over virtualized platform. Our results show that we can achieve session-level resilience by performing fail-over procedure within tens of milliseconds under different combinations of IMS failures in both control-plane and data-plane operations.
不间断IMS:虚拟IP多媒体子系统故障时用户接入维护
IP多媒体子系统(IMS)的网络功能虚拟化(NFV)为满足日益增长的多媒体流量需求提供了广阔的前景。在本文中,我们证明了虚拟化IMS (vIMS)在故障情况下无法提供会话级的弹性,成为实现高服务可用性的瓶颈。我们提出了一种为vIMS操作提供容错的设计。在控制平面上,系统将单个IMS操作分解为不同的原子动作,并将这些动作划分为关键和非关键动作。只有对关键操作进行实时监控,系统可以在故障后轻松恢复IMS操作。在数据平面上,对多媒体业务流进行分解,并将各多媒体业务划分为单独的VNF (virtual Network Function)。通过数据平面分区,我们的设计将故障的损害限制在仅失效的VNF上。之后,受影响的业务流将与其他正在进行的业务流合并。我们在虚拟化平台上构建了开源IMS的系统原型。我们的结果表明,在控制平面和数据平面操作的不同IMS故障组合下,我们可以在几十毫秒内执行故障转移过程,从而实现会话级弹性。
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来源期刊
CiteScore
30.00
自引率
4.30%
发文量
234
审稿时长
6 months
期刊介绍: The IEEE Journal on Selected Areas in Communications (JSAC) is a prestigious journal that covers various topics related to Computer Networks and Communications (Q1) as well as Electrical and Electronic Engineering (Q1). Each issue of JSAC is dedicated to a specific technical topic, providing readers with an up-to-date collection of papers in that area. The journal is highly regarded within the research community and serves as a valuable reference. The topics covered by JSAC issues span the entire field of communications and networking, with recent issue themes including Network Coding for Wireless Communication Networks, Wireless and Pervasive Communications for Healthcare, Network Infrastructure Configuration, Broadband Access Networks: Architectures and Protocols, Body Area Networking: Technology and Applications, Underwater Wireless Communication Networks, Game Theory in Communication Systems, and Exploiting Limited Feedback in Tomorrow’s Communication Networks.
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