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Extending p-Cycles to Source Failure Recovery for Optical Multicast Media Traffic

机译:将p周期扩展到源故障恢复以进行光组播媒体流量

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Without an efficient and fast failure recovery mechanism, capricious network failures can lead to severe disruption to optical multicast sessions and calamitous loss to network operators, Internet service providers, and end customers. Most research on optical multicast media traffic protection considers link and intermediate node failures but not source node failures. However, source failure recovery is more important than failure recovery of any other node or link on a multicast tree, especially for Internet Protocol television applications, which have real-time constraints. Without a source failure recovery mechanism, if the source node fails, all multicast sessions originating from the source are terminated. Simply adding the source redundancy cannot guarantee reliable optical multicast transmission in the case of catastrophic source failure. Thus, the development of efficient protection algorithms equipped with source redundancy, which can handle source failure recovery is critical to the success of optical multicast media. In this paper, we extend the flow p-cycle-based protection approach to source failure recovery on top of combined node and link failure recovery. Simulation results show that the additional capacity required for source failure recovery is comparable to the additional capacity required for (intermediate) node failure recovery, on top of link failure recovery. Both are less than 14%, with reference to link failure recovery. Results also show that the flow p-cycle-based dual-source multicast protection approach provides significant capacity saving compared with the modified optimal-path-pair-based dual-source approach.
机译:如果没有有效且快速的故障恢复机制,那么反复无常的网络故障可能会导致光组播会话严重中断,并给网络运营商,Internet服务提供商和最终客户带来灾难性的损失。关于光组播媒体流量保护的大多数研究都考虑了链路和中间节点故障,而不是源节点故障。但是,源故障恢复比多播树上任何其他节点或链路的故障恢复更为重要,尤其是对于具有实时约束的Internet协议电视应用而言。如果没有源故障恢复机制,则如果源节点发生故障,则终止源自该源的所有多播会话。在灾难性源故障的情况下,仅添加源冗余并不能保证可靠的光多播传输。因此,开发具有源冗余的,可以处理源故障恢复的有效保护算法对于光组播媒体的成功至关重要。在本文中,我们将基于流程p周期的保护方法扩展到组合节点和链接故障恢复之上的源故障恢复。仿真结果表明,除了链路故障恢复之外,源故障恢复所需的额外容量可与(中间)节点故障恢复所需的额外容量相媲美。相对于链路故障恢复,两者均小于14%。结果还表明,与改进的基于最优路径对的双源方法相比,基于流p周期的双源多播保护方法可显着节省容量。

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