软件定义移动组播

Shunyi Xu, Chuan Wu, Zongpeng Li
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引用次数: 3

摘要

移动组播技术已广泛应用于电信网络中,用于IPTV和视频会议等信息传播应用。近年来,移动组播的研究主要集中在快速切换协议上,而组播树管理算法的改进很少。最短路径树代表了实际系统中多播拓扑的现状。斯坦纳树在理论界得到了广泛的研究,众所周知,它具有带宽效率,但也伴随着相关的复杂性。软件定义网络(SDN)范式的最新发展揭示了实现更复杂的协议以获得更好的路由性能。我们提出了一种基于sdn的设计来解决移动组播中复杂性与性能的矛盾。我们在移动网络中构造了低成本的多组组斯坦纳树,使用SDN控制器来协调树的构造和变形。我们设计的亮点包括一组高效的在线算法,用于在节点到达和离开时进行树调整,以及基于布尔逻辑表示的约束的SDN规则更新框架,以确保循环自由的规则更新。该算法被证明可以实现与离线最优Steiner树的恒定竞争比,并且每次调整的平摊边缘交换次数为常数。基于mininet的实现和评估进一步验证了我们设计的有效性。
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Software Defined Mobile Multicast
Mobile multicast has been deployed in telecommunication networks for information dissemination applications such as IPTV and video conferencing. Recent studies of mobile multicast focused on fast handover protocols, and algorithms for multicast tree management have witnessed little improvement over the years. Shortest path trees represent the status quo of multicast topology in real-world systems. Steiner trees were investigated extensively in the theory community and are known to be bandwidth efficient, but come with an associated complexity. Recent developments in the Software Defined Networking (SDN) paradigm have shed light on implementing more sophisticated protocols for better routing performance. We propose an SDN-based design to combat the complexity vs. Performance dilemma in mobile multicast. We construct low-cost Steiner trees for multicastin a mobile network, employing an SDN controller for coordinating tree construction and morphing. Highlights of our design include a set of efficient online algorithms for tree adjustment when nodes arrive and depart on the fly, and an SDN rule update framework based on constraints expressed by boolean logic to ensure loop free rule updates. The algorithms are proven to achieve a constant competitive ratio against the offline optimal Steiner tree, with an amortized constant number of edge swaps per adjustment. Mininet-based implementation and evaluation further validate the efficacy of our design.
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