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A Distributed Multicast Label Switched Path Setup Scheme to Solve the Multi-destination Reservation Collision

机译:解决多目的地预留冲突的分布式组播标签交换路径设置方案

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Generalized Multi-Protocol Label Switching (GMPLS) appears as a promising candidate to implement the control plane for next-generation optical networks. In GMPLS-based wavelength division multiplexing (WDM) optical networks, existing resource reservation protocol (RSVP) may fail to setup a multicast Label Switched Path (LSP) with high probability, since multiple destinations in one multicast session may reserve different wavelengths and result in reservation collision at branch nodes. In this work, we extend the existing GMPLS RSVP signaling protocol and propose an efficient scheme to set up optical multicast LSP and avoid wavelength resources collision, called Last-hop Label Set (LLS) scheme, by introducing a new object called Last-hop Label Set object in Resv message. Once the setup of a multicast LSP fails caused by wavelength reservation collision at a branch node, the branch node can re-reserves a new wavelength according to the Last-hop Label Set object within Resv messages. The numerical results indicate that the proposed LLS scheme offers lower blocking probability compared to the existing GMPLS signaling scheme.
机译:通用多协议标签交换(GMPLS)似乎是为下一代光网络实现控制平面的有前途的候选者。在基于GMPLS的波分复用(WDM)光网络中,现有资源预留协议(RSVP)可能无法建立多播标签交换路径(LSP)的可能性很高,因为一个多播会话中的多个目的地可能会保留不同的波长并导致分支节点上的预留冲突。在这项工作中,我们扩展了现有的GMPLS RSVP信令协议,并通过引入一个称为Last-hop Label的新对象,提出了一种建立光组播LSP并避免波长资源冲突的有效方案,称为Last-hop Label Set(LLS)方案。在Resv消息中设置对象。一旦由于分支节点处的波长保留冲突而导致多播LSP的建立失败,则分支节点可以根据Resv消息中的“最后一跳标签集”对象重新保留新的波长。数值结果表明,与现有的GMPLS信令方案相比,提出的LLS方案具有更低的阻塞概率。

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