A high performance media server and QoS routing for SVC streaming based on Software-Defined Networking

Wei-En Liang, Chung-An Shen
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引用次数: 10

Abstract

Media streaming is the most rapid-growth network service and occupies most of traffics on Internet. This paper presents approaches for enhancing the network performance for media streaming in two aspects. Firstly, in order to improve the network performance of a media server executing on a Virtual Machine (VM), a network framework using Software-Defined Networking (SDN) is introduced. This framework integrates the Kernel-based VM with OpenFlow switch to address the issue of virtualization overhead. The experimental results show that this scheme improves network performance by 68% compared to the conventional structure. Furthermore, for maintaining the quality of Scalable Video Coding (SVC) media streaming during the transmission, a novel routing algorithm based on SDN is illustrated. This algorithm jointly considers bandwidth, delay, and packet loss and automatically deploys routes for different layers in SVC streaming. Comparing to conventional methods, this algorithm reduces the packet loss rate by more than 10% and improves the quality of the received Video sequence.
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基于软件定义网络的SVC流的高性能媒体服务器和QoS路由
流媒体业务是Internet上发展最快的一种网络业务,它占据了Internet上最大的流量。本文从两个方面提出了提高流媒体网络性能的方法。首先,为了提高在虚拟机上运行的媒体服务器的网络性能,引入了一种基于软件定义网络(SDN)的网络框架。该框架将基于内核的VM与OpenFlow交换机集成在一起,以解决虚拟化开销问题。实验结果表明,该方案与传统结构相比,网络性能提高了68%。此外,为了在传输过程中保持可扩展视频编码(SVC)流媒体的质量,提出了一种基于SDN的路由算法。该算法综合考虑了SVC流的带宽、时延和丢包等因素,自动实现了SVC流的分层路由部署。与传统方法相比,该算法将丢包率降低了10%以上,提高了接收视频序列的质量。
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