在支持分段路由的光网络中有效的标签编码

Francesco Lazzeri, G. Bruno, J. Nijhof, A. Giorgetti, P. Castoldi
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引用次数: 47

摘要

目前用于光网络分组的标准化GMPLS协议套件依赖于信令会话的分层实例。这样的会话也必须在传输节点中建立和维护,从而导致复杂而繁重的控制平面实现。最近提出了一种称为段路由(SR)的新技术来解决这些问题。SR依赖于源路由范式来提供流量工程解决方案。特别是,给定请求的计算路由表示为应用于入口节点的数据包的报头的段列表。然后需要特定的算法来执行路径计算,并通过有效的段列表编码(即标签堆栈)表示计算出的路径,从而最小化段列表深度(SLD)(即段列表中包含的标签数量)。到目前为止,还没有提出在基于sr的网络中共同提供路径和段列表计算的算法。本文提出了一种高效的段列表编码算法,保证了基于sr的网络的最优路径计算和有限的SLD。该算法还考虑了等代价多路径和多约束条件。该算法成功地应用于不同的网络场景,在多个用例中展示了其灵活性,并在段列表深度和引入的数据包开销方面显示了有效的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient label encoding in segment-routing enabled optical networks
The currently standardized GMPLS protocol suite for packet over optical networks relies on hierarchical instances of signaling sessions. Such sessions have to be established and maintained also in transit nodes, leading to complex and weighty control plane implementations. A novel technology called Segment Routing (SR) has been recently proposed to address these issues. SR relies on the source routing paradigm to provide traffic engineering solutions. In particular, the computed route for a given request is expressed as a segment list applied as an header to data packets at the ingress node. Specific algorithms are then required to perform the path computation and express the computed path through an effective segment list encoding (i.e., label stack), minimizing the segment list depth (SLD) (i.e., the number of labels included in the segment list). So far, no algorithms have been proposed to jointly provide path and segment list computation in SR-based networks. In this study, an efficient segment list encoding algorithm is proposed, guaranteeing optimal path computation and limited SLD in SR-based networks. The algorithm also accounts for equal-cost multiple paths and multiple constraints. The proposed algorithm is successfully applied to different network scenarios, demonstrating its flexibility in several use cases and showing effective performance in terms of segment list depth and introduced packet overhead.
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