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首页> 外文期刊>Telecommunication systems: Modeling, Analysis, Design and Management >Fast adaptive routing supporting mobile senders in Source Specific Multicast
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Fast adaptive routing supporting mobile senders in Source Specific Multicast

机译:在源特定组播中支持移动发送者的快速自适应路由

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摘要

IP multicast deployment recently progresses, but group services often remain restricted to limited domains and fail to comply with route-optimizing mobility management of the next generation Internet. Source Specific Multicast (SSM) facilitates transparent inter-domain routing and is expected to globally disseminate to many users and services. However, mobility support for Source Specific Multicast is still known to be a major open problem. In this paper, we propose the Enhanced Tree Morphing (ETM) protocol for extending SSM routing to mobile multicast sources. The scheme dynamically adapts SSM forwarding states to sender mobility, and transforms (morphs) source specific distribution trees into new, optimal trees rooted at a relocated source. ETM is simple, robust and secure, while it admits superior performance in packet forwarding at a low signaling overhead. Extensive evaluations based on a full protocol implementation, and simulations based on real-world topology data are performed, granting full insight into the properties of packet loss and delay stretch; protocol convergence times and router state evolution during single and rapidly repealed handovers. In a constant bit rate scenario, an ETM source handover typically leads to a slightly increasing delay of the first data packet, only. When operating on realistic network topologies, the protocol uniformly converges within less than 50 ms, thereby sustaining robustness under rapid source movement at all speeds common to our mobile world. Further optimizations are identified for FMIPv6 and for multihomed nodes.
机译:IP多播部署最近取得了进展,但是组服务通常仍然受限于有限的域,并且无法遵守下一代Internet的路由优化移动性管理。源特定组播(SSM)有助于透明的域间路由,并且有望在全球范围内传播给许多用户和服务。但是,仍然知道针对特定源组播的移动性支持是一个主要的开放问题。在本文中,我们提出了增强树变形(ETM)协议,用于将SSM路由扩展到移动多播源。该方案动态地使SSM转发状态适应发送者的移动性,并将特定于源的分发树转换(变形)为根植于重新定位的源的最佳的新树。 ETM简单,健壮和安全,同时它以低信令开销承认了分组转发中的卓越性能。基于完整协议的实施进行了广泛的评估,并基于真实世界的拓扑数据进行了仿真,从而全面了解了丢包和延迟延展的特性。单次和快速废止切换期间的协议收敛时间和路由器状态演变。在恒定比特率的情况下,ETM源切换通常只会导致第一个数据包的延迟稍微增加。当在实际的网络拓扑上运行时,协议在不到50毫秒内均匀收敛,从而在快速移动源的情况下以移动世界通用的所有速度保持鲁棒性。确定了针对FMIPv6和多宿主节点的进一步优化。

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